WO2002087635A1 - Systeme et procede de nettoyage, de desinfection radicale ou de sterilisation d'instruments ou de dispositifs medicaux ou dentaires - Google Patents

Systeme et procede de nettoyage, de desinfection radicale ou de sterilisation d'instruments ou de dispositifs medicaux ou dentaires Download PDF

Info

Publication number
WO2002087635A1
WO2002087635A1 PCT/US2002/010364 US0210364W WO02087635A1 WO 2002087635 A1 WO2002087635 A1 WO 2002087635A1 US 0210364 W US0210364 W US 0210364W WO 02087635 A1 WO02087635 A1 WO 02087635A1
Authority
WO
WIPO (PCT)
Prior art keywords
station
composition
circulate
around
rinse
Prior art date
Application number
PCT/US2002/010364
Other languages
English (en)
Other versions
WO2002087635A9 (fr
Inventor
Sally Kay Swart
Shaun Patrick Kennedy
Original Assignee
Ecolab Inc.
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Ecolab Inc. filed Critical Ecolab Inc.
Priority to CA002445272A priority Critical patent/CA2445272A1/fr
Priority to EP02725487A priority patent/EP1381398A1/fr
Priority to JP2002584977A priority patent/JP2004537345A/ja
Publication of WO2002087635A1 publication Critical patent/WO2002087635A1/fr
Publication of WO2002087635A9 publication Critical patent/WO2002087635A9/fr

Links

Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2/00Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor
    • A61L2/16Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor using chemical substances
    • A61L2/20Gaseous substances, e.g. vapours
    • A61L2/202Ozone
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B1/00Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor
    • A61B1/12Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor with cooling or rinsing arrangements
    • A61B1/121Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor with cooling or rinsing arrangements provided with means for cleaning post-use
    • A61B1/123Instruments for performing medical examinations of the interior of cavities or tubes of the body by visual or photographical inspection, e.g. endoscopes; Illuminating arrangements therefor with cooling or rinsing arrangements provided with means for cleaning post-use using washing machines
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B90/00Instruments, implements or accessories specially adapted for surgery or diagnosis and not covered by any of the groups A61B1/00 - A61B50/00, e.g. for luxation treatment or for protecting wound edges
    • A61B90/70Cleaning devices specially adapted for surgical instruments
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61CDENTISTRY; APPARATUS OR METHODS FOR ORAL OR DENTAL HYGIENE
    • A61C19/00Dental auxiliary appliances
    • A61C19/002Cleaning devices specially adapted for dental instruments
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2/00Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor
    • A61L2/02Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor using physical phenomena
    • A61L2/025Ultrasonics
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2/00Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor
    • A61L2/02Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor using physical phenomena
    • A61L2/04Heat
    • A61L2/06Hot gas
    • A61L2/07Steam
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2/00Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor
    • A61L2/16Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor using chemical substances
    • A61L2/18Liquid substances or solutions comprising solids or dissolved gases
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2/00Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor
    • A61L2/16Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor using chemical substances
    • A61L2/20Gaseous substances, e.g. vapours
    • A61L2/206Ethylene oxide
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2/00Methods or apparatus for disinfecting or sterilising materials or objects other than foodstuffs or contact lenses; Accessories therefor
    • A61L2/26Accessories or devices or components used for biocidal treatment
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B3/00Cleaning by methods involving the use or presence of liquid or steam
    • B08B3/04Cleaning involving contact with liquid
    • B08B3/10Cleaning involving contact with liquid with additional treatment of the liquid or of the object being cleaned, e.g. by heat, by electricity or by vibration
    • B08B3/12Cleaning involving contact with liquid with additional treatment of the liquid or of the object being cleaned, e.g. by heat, by electricity or by vibration by sonic or ultrasonic vibrations
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B90/00Instruments, implements or accessories specially adapted for surgery or diagnosis and not covered by any of the groups A61B1/00 - A61B50/00, e.g. for luxation treatment or for protecting wound edges
    • A61B90/70Cleaning devices specially adapted for surgical instruments
    • A61B2090/701Cleaning devices specially adapted for surgical instruments for flexible tubular instruments, e.g. endoscopes
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2202/00Aspects relating to methods or apparatus for disinfecting or sterilising materials or objects
    • A61L2202/10Apparatus features
    • A61L2202/17Combination with washing or cleaning means
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61LMETHODS OR APPARATUS FOR STERILISING MATERIALS OR OBJECTS IN GENERAL; DISINFECTION, STERILISATION OR DEODORISATION OF AIR; CHEMICAL ASPECTS OF BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES; MATERIALS FOR BANDAGES, DRESSINGS, ABSORBENT PADS OR SURGICAL ARTICLES
    • A61L2202/00Aspects relating to methods or apparatus for disinfecting or sterilising materials or objects
    • A61L2202/20Targets to be treated
    • A61L2202/24Medical instruments, e.g. endoscopes, catheters, sharps

Definitions

  • the present invention includes a method and system for cleaning, disinfecting, or sterilizing objects, such as medical or dental instruments or devices.
  • the system of the invention includes an energy source, such as a sonicator, adapted and configured to impact the object with energy, such as ultrasonic energy; a liquid transporter adapted and configured to circulate around, through, and/or into the object a wash composition, an antimicrobial composition, a rinse composition, or a plurality of these compositions; and a dryer adapted and configured to dry the object, preferably, in the presence of a sterilant.
  • the method of the invention includes contacting the object with a wash composition and energy, such as ultrasonic energy; treating the object with an antimicrobial composition; rinsing the object with a rinse composition; and drying the object, preferably in the presence of a sterilant.
  • energy such as ultrasonic energy
  • Apparatus that wash and disinfect generally require that any stubborn soil be manually removed by presoaking followed by manual scrubbing.
  • a typical apparatus that washes and disinfects applies a cleaning composition and a disinfectant to an object.
  • Some washing and disinfecting apparatus employ a sonication bath. After washing and disinfecting, the object is subjected to sterilization, typically by steam in an autoclave or with ethylene oxide gas.
  • the present invention includes a method and system for cleaning, disinfecting, or sterilizing objects, such as medical or dental instruments or devices.
  • the system of the invention includes an energy source, such as a sonicator, adapted and configured to impact the object with energy, such as ultrasonic energy; a liquid transporter adapted and configured to circulate around, through, and/or into the object a wash composition, an antimicrobial composition, a rinse composition, or a plurality of these compositions; and a dryer adapted and configured to dry the object, preferably, in the presence of a sterilant.
  • the sonicator can be adapted and configured to provide ultrasonic energy throughout fluid within the system, to provide ultrasonic energy from one or more points within the system, to provide ultrasonic energy from one or more points outside the system.
  • a sonicator that provides ultrasonic energy throughout fluid within the system preferably includes a tank or bath type sonicator.
  • a sonicator that provides ultrasonic energy from one or more points can include a sonicator probe constructed for immersion in a liquid or an irrigated probe.
  • the system also includes a holder that can position the object near the probe or in a position suitable for cleaning with the probe.
  • the system can include more than one sonicator, for example, to advantageously provide both ultrasonic energy throughout a fluid and from a probe.
  • the liquid transporter can include one or more independent liquid transporter systems or subsystems for circulating one or more fluids at one or more stations of the system.
  • the liquid transporter can be constructed to immerse the object in a liquid composition or to spray the object with the composition.
  • One liquid transporter can circulate several liquid compositions and include the valves and controllers required for changing compositions.
  • a composition can have a dedicated liquid transporter.
  • the liquid transporter is adapted and configured to circulate wash, rinse, and antimicrobial compositions in a defined sequence.
  • the dryer is adapted and configured to dry the object, preferably in the presence of a sterilant.
  • the dryer can include or work in conjunction with the apparatus that dispenses the sterilant.
  • the dryer circulates heated gas, such as heater air, around the object.
  • Sterilant can be added before, during, or after drying, for example, by an injector that releases gaseous sterilant from a pressurized vessel.
  • the dryer can include venting adapted and configured to remove the heated gas and the sterilant from the surroundings of the object and, optionally, from the system.
  • sterilant injector and vent can be distinct from and operate independently of the dryer.
  • the system can include one or more stations adapted and configured to circulate a composition around the object and/or to dry the object.
  • at least one of the stations includes a housing that can enclose the object.
  • the stations can occupy any of several locations with respect to one another.
  • the stations can share or have distinct subassemblies, such as plumbing (e.g. sprayers, pumps, etc.).
  • stations can occupy the same space or chamber, but employ different apparatus for circulating compositions.
  • stations can occupy overlapping spaces.
  • stations can occupy overlapping locations in a housing of a pass-through or tunnel unit. Stations can also occupy distinct spaces.
  • the first station is constructed for impacting the object with ultrasonic energy.
  • the first station and the liquid transporter are adapted and configured to circulate at the first station and around the object a wash composition, an antimicrobial composition, a rinse composition, or to circulate a plurality of these compositions.
  • the first station and the dryer can be adapted and configured to dry the object at the first station.
  • the second station is adapted and configured to circulate the antimicrobial composition, the rinse composition, or a plurality of these compositions.
  • the second station and the dryer can be adapted and configured to dry the object at the second station.
  • the third station is adapted and configured to circulate the antimicrobial composition, the rinse composition, or a plurality of these compositions.
  • the third station and the dryer can be adapted and configured to dry the object at the third station.
  • the fourth station is adapted and configured to circulate the antimicrobial composition, the rinse composition, or a plurality of these compositions.
  • the fourth station and the dryer can be adapted and configured to dry the object at the fourth station.
  • the fifth station is adapted and configured to circulate the rinse composition, and typically, is adapted and configured to dry the object and/or to expose the object to gaseous sterilant.
  • the sixth station is adapted and configured to dry the object and/or to expose the object to gaseous sterilant.
  • the method of the invention includes contacting the object with a wash composition and energy, such as ultrasonic energy; treating the object with an antimicrobial composition; rinsing the object with a rinse composition; and drying the object, preferably in the presence of a sterilant.
  • the wash composition can include an antimicrobial agent, e.g., a quaternary ammonium antimicrobial agent, and a mild detergent, a source of alkalinity, e.g. carbonate, or a combination thereof.
  • Contacting the object with ultrasonic energy can include providing ultrasonic energy from a point source adjacent the object, applying ultrasonic energy throughout the wash composition, or both. Contacting with wash composition typically includes circulating a wash composition around the object.
  • Treating with antimicrobial composition can include treating with a peroxycarboxylic acid composition.
  • Antimicrobial treating typically includes treating the object for a sufficient time to achieve high level disinfection, or for a sufficient time to achieve sterilization.
  • Rinsing typically employs a rinse composition including an alcohol drying agent, a lubricant, a rinse agent, or a combination thereof.
  • Rinsing can include a first rinsing after contacting and before treating, a second rinsing after treating and before drying, or a combination thereof.
  • the first rinsing can include rinsing with water, a rinse agent, or a combination thereof.
  • the second rinsing can include rinsing with an alcohol drying agent, a lubricant, a rinse agent, or a combination thereof.
  • Drying can include exposing the object to a gaseous sterilant and/or circulating a heated gas around the object.
  • exposing the object to a gaseous sterilant can occur independently of, and before or after, drying.
  • Figure 1 is a block diagram of a one station embodiment of the system of the invention with separate or overlapping stations.
  • Figure 2 is a block diagram of a two station embodiment of the system of the invention with separate or overlapping stations.
  • Figure 3 is a block diagram of a three station embodiment of the system of the invention with separate or overlapping stations.
  • Figure 4 is a block diagram of a four station embodiment of the system of the invention with separate or overlapping stations.
  • Figure 5 is a block diagram of a five station embodiment of the system of the invention with separate or overlapping stations.
  • Figure 6 is a block diagram of a six station embodiment of the system of the invention with separate or overlapping stations.
  • Figure 7 is a block diagram of a five station embodiment of the system of the invention with separate or overlapping stations and including a plurality of emitters.
  • Figure 8 is a block diagram of a five station embodiment of the system of the invention with the stations in the same or overlapping spaces.
  • the term "around” refers to on all of various sides, including the exterior of and within any accessible portions of an object, or surrounding an object. For example, for an object having cavities or lumens that are or can open to the exterior of the object, around includes into those cavities or lumens. Thus, around includes in and around, within, through, and throughout an object. Around includes around any accessible solid portion of the object. As used herein, circulating around an object includes circulating around the exterior of the object and into or through any accessible portions of the object, such as any cavities or lumens. For example, circulating fluid around an object includes circulating fluid through any lumen or into any accessible cavity.
  • Circulating around and object with one or more lumens or cavities can include employing apparatus, e.g., as part of the liquid transporter, to direct fluid into the cavity or lumen.
  • apparatus e.g., as part of the liquid transporter
  • instrument refers to the various medical or dental instruments or devices that can benefit from cleaning, disinfection, and/or sterilization.
  • the phrases "medical instrument”, “dental instrument”, “medical device”, “dental device”, “medical equipment”, or “dental equipment” refer to instruments, devices, tools, appliances, apparatus, and equipment used in medicine or dentistry. Such instruments, devices, and equipment can be cold sterilized, soaked or washed and then heat sterilized, or otherwise benefit frdm cleaning, disinfecting, or sterilizing according to the present invention. These various instruments, devices and equipment include, but are not limited to: diagnostic instruments, trays, pans, holders, racks, forceps, scissors, shears, saws
  • elevated temperature refers to temperatures above room temperature and commonly employed for washing or presoaking wares or instruments. Washing can typically be conducted at elevated temperatures of about 20 to about 80 °C, preferably about 30 to about 60 °C, preferably about 60 to about 80 °C. Rinsing can typically be conducted at elevated temperatures of about 40 to about 80 °C. High temperature rinsing can typically be conducted at elevated temperatures of about 80 to about 95 °C.
  • decontamination or “decontaminate” refer to use of physical or chemical processes to remove, inactivate, or destroy pathogenic organisms on an object or its surface and to render the object safe for handling, use of disposal.
  • disinfection or “disinfect” refer to destruction of pathogenic and other microorganisms by thermal or chemical processes destroying most pathogens, but not necessarily all microbial forms, such as bacterial spores.
  • stereolithization or “sterilize” refer to processes used to render an object free of all forms of viable microorganisms.
  • microorganisms refers to any noncellular or unicellular (including colonial) organism. Microorganisms include all prokaryotes. Microorganisms include bacteria (including cyanobacteria), lichens, microfungi, protozoa, virinos, viroids, viruses, and some algae. As used herein, the term “microbe” is synonymous with microorganism.
  • the present invention includes a system and method for washing, disinfecting, and/or sterilizing an object, such as a medical device or instrument.
  • the system can include an emitter that applies energy to the object, such as a sonicator that applies ultrasonic energy to the object; one or more liquid transporter systems that circulate around the object a wash composition, a rinse composition, and/or an antimicrobial composition; and/or a dryer constructed to dry the object, preferably in the presence of a sterilant.
  • the system includes apparatus for converting a soiled object, e.g., a soiled medical or dental instrument or device, to a cleaned, disinfected, and/or sterilized object.
  • the system can be constructed to expose the object to ultrasonic energy, or another type of energy, before and/or during a wash cycle.
  • the system can employ an ultrasonic probe, such as an irrigated ultrasonic probe, positioned near the object to expose the object to ultrasonic energy either before running the wash cycle and/or during the wash cycle.
  • the sonicator can include a moveable, external probe, such as an irrigated probe, for manual sonic cleaning of dirty objects.
  • the system can be constructed to circulate wash composition around the object with concurrent application of ultrasonic energy.
  • the system can include a sprayer that sprays the object with wash composition while a sonicator applies ultrasonic energy.
  • the system can include an immersion tank, a circulating pump that circulates wash composition within the immersion tank, a sonicator that applies ultrasonic energy to the circulating wash composition, and a conveyor that transports the object into or through the tank.
  • the system can include a water heater or other apparatus to increase the temperature of the wash composition to an elevated temperature.
  • the wash composition employed in the wash cycle typically includes a surfactant or other cleaner, but can also include an antimicrobial agent, such as a quaternary ammonium antimicrobial agent.
  • the wash composition includes an enzyme, such as a detersive enzyme.
  • the system can employ the same or similar spraying or immersion apparatus to circulate around the object a first rinse composition.
  • the first rinse composition removes wash composition and loose soil from the object, and can include a rinse agent.
  • the system can circulate around the object an antimicrobial composition, such as a peroxycarboxylic acid composition.
  • a preferred peroxycarboxylic acid composition includes builders and/or corrosion inhibitors and has a pH of about 6.
  • the antimicrobial composition can be employed at a concentration, temperature, and for a time sufficient to achieve antimicrobial effect, high level disinfection, or sterilization.
  • the system can include a water heater or other apparatus to maintain the temperature of the antimicrobial composition at or slightly above room temperature.
  • the system can include an emitter adapted and configured to impact the object with energy either during or after circulating antimicrobial composition.
  • Such an emitter can impact the object with, for example, light or microwave energy, preferably in the presence of the antimicrobial composition.
  • impacting with such energy has antimicrobial effects and can also generate radicals and other antimicrobial moieties from the antimicrobial composition, which increases the effectiveness of circulating the antimicrobial composition.
  • the system can then employ the same or similar spraying or immersion apparatus to circulate around the object a second rinse composition, preferably a rinse composition including alcohol drying agent and/or an oil based emulsion or "milk bath” lubricant for medical instruments.
  • Lubricating oil based emulsions or milk baths are known to those of skill in the art.
  • the system also can include a dryer constructed to dry the object, preferably, in the presence of a sterilant.
  • the dryer can include a blower that circulates ambient or heated air around the object.
  • the circulated air can include a gaseous sterilant, such as chlorine dioxide or ethylene oxide.
  • the gaseous sterilant can be added to the surroundings of the object by an injector that releases the gas from a pressure vessel.
  • This injector can be a part of the dryer, or it can be an independent apparatus.
  • the injector can be adapted and configured to release gaseous sterilant into the surroundings of the object before, after, or during drying.
  • the system can include an emitter adapted and configured to impact the object with energy before, during, or after operation of the dryer.
  • System (1) includes a sonicator (5), a liquid transporter (7), and a dryer (9).
  • Dryer (9) is adapted and configured to dry the object, preferably in the presence of a sterilant.
  • Liquid transporter (7) is adapted and configured to circulate fluids around the object. Liquid transporter (7) can transport fluids such as a wash composition, antimicrobial composition, a rinse composition, a plurality of these compositions, or preferably, all of these compositions.
  • Sonicator (5) is adapted and configured to impact the object with ultrasonic energy. Typically the antimicrobial and/or rinse compositions are circulated by liquid transporter (7) in the form of a sprayer (not shown).
  • system (1) includes one or more stations that can house the object during the several washing, rinsing, disinfecting, and drying cycles.
  • the system includes a first station (3), sonicator (5), liquid transporter (7), and dryer (9).
  • Dryer (9) is adapted and configured to dry the object, preferably in the presence of a sterilant.
  • Liquid transporter (7) is adapted and configured to circulate fluids at the first station and around the object. Liquid transporter (7) can transport fluids such as a wash composition, antimicrobial composition, a rinse composition, or a plurality of these compositions.
  • Sonicator (5) is adapted and configured to impact the object in the first station (3) with ultrasonic energy.
  • Sonicator (5) can be constructed in any of several configurations. Sonicator (5) can be adapted and configured to provide ultrasonic energy throughout fluid within system (1), e.g. at first station (3). For example, configurations of sonicators (5) suitable for sonication tanks or baths are known to those of skill in the art. Alternatively, sonicator (5) can be adapted and configured to provide ultrasonic energy from one or more points within system (1), e.g. first station (3). For example, configurations of ultrasonic probes that emit ultrasonic energy, for example from a location within a liquid, are known to those of skill in the art. In a preferred embodiment, the system also includes a holder (11) for an instrument, which can position the instrument for receiving ultrasonic energy.
  • sonicator (5) can include ultrasonic probe (13) within system (1), e.g., first station (3), and adjacent a position taken by the instrument in holder (11). Sonicator (5) typically dislodges soil from an object or instrument in the system, and the soil can be removed from the object or instrument by the liquid transporter (7).
  • System (1) and/or sonicator (5) can include second sonicator (41) positioned on the exterior of system (1) and/or external to first station (3).
  • Second sonicator (41) preferably includes a probe adapted and configured to be positioned near the object.
  • the second sonicator (41) probe can be positioned near holder (11) positioned on the exterior of system (1) and used to manually sonicate the object.
  • second sonicator (41) probe (13) is moveable and can be positioned near a particular soiled portion of the object.
  • second sonicator (41) probe (13) is an irrigated probe.
  • system (1) can include a liquid bath for immersion of the object and second sonicator (41 ) probe (13).
  • sonicator (5) or second sonicator (41) is adapted and configured to provide ultrasonic energy throughout a liquid bath at about 8 to about 300 kHz, preferably about 15 to about 60 kHz.
  • sonicator (5) or second sonicator (41) is adapted and configured to provide ultrasonic energy from a point source, such as a probe (13) or an irrigated probe, at about 20 to about 30 kHz.
  • Liquid transporter (7) can be constructed in any of several configurations. Liquid transporter (7) circulates one or more fluids, typically liquids, within the system (1), e.g., at first station (3), and around the object. Circulating includes any way in which a fluid, particularly a liquid, can be moved through system (1) and over, in, and/or around the object. Circulating includes moving fluid through or into any cavities or lumens in or on the object. For example, if the object is immersed in a liquid, circulating can include stirring, pumping, or agitating liquid at or within the station. Typically, such stirring, pumping, or agitating moves the liquid relative to the object to carry dislodged soil away from the object. Typically, such stirring, pumping, or agitating moves the liquid into or through any cavities or lumens that might be present in or on the object. Thus, liquid transporter (7) can include stirrers, pumps, or paddles that circulate liquid within the station.
  • Circulating fluid around an object can also include moving, with a pump or other mechanism, liquid through the lumen of an object, such as anesthesia tubing or a catheter.
  • liquid transporter (7) can be adapted and configured to couple to the object to direct fluid through the lumen.
  • anesthesia tubing or a catheter can be oriented in rack that positions the lumen into the flow of the composition or that couples the lumen to a jet circulating the composition.
  • Circulating around an object can also include spraying liquid at system (1) and over or around the object. Circulating around an object by spraying can include spraying directed at or into any cavity or lumen that might be present on the device.
  • spraying includes employing a sprayer having a nozzle, jet, arm, or wand (not shown).
  • the sprayer can include fixed or moving spray jets or arms, e.g. it can be a rotary sprayer.
  • the sprayed liquid can be drained from system (1) or recovered by liquid transporter (7) and sprayed again.
  • Liquid transporter (7) can include a pump that recovers liquid from the bottom of system (1) and/or forces it through a spray nozzle, jet, or wand (not shown).
  • Liquid transporter (7) can also add a fluid to system (1), e.g., at first station (3), and/or remove fluid from system (1), e.g., at first station (3).
  • Liquid transporter (7) can sequentially circulate a wash composition, an antimicrobial composition, and/or a rinse composition. Sequentially circulating refers to circulating one composition after another. Typically, sequential circulation includes adding a first composition to system (1), circulating the first composition within system (1), removing the first composition from system (1), adding a second composition to system (1), circulating the second composition within system (1), removing the second composition from system (1), and so on. Typically sequentially circulating includes circulating in the order listed.
  • system (1) preferably first station (3), sonicator (5), and liquid transporter (7) are adapted and configured to immerse the object in the wash composition and apply ultrasonic energy to the immersed object.
  • Sonicator (5) can be adapted and configured to provide ultrasonic energy from a point within system (1), to apply ultrasonic energy throughout the wash composition, or both.
  • system (1) or station (3) can take any of a variety of configurations suitable for containing a liquid.
  • system (1) or station (3) can include a tub, a tank, or a bath.
  • liquid transporter (7) can include one or more pumps, drains, and/or valves configured to add liquid to system (1), circulate liquid within system (1) and around the object (including into or through any cavities or lumens), and to drain or remove liquid from system (1).
  • a tub, tank or bath employed in system (1) can include a sump that receives the wash, rinse, or antimicrobial composition, and that also includes a heating coil for heating one or more of these compositions.
  • system (1) can include a conveyor, lift, or other apparatus adapted and configured to lower the object or a rack containing the object into the tub, tank, or bath containing the composition.
  • System (1) e.g., first station (3), can also circulate around the object antimicrobial composition and/or rinse the object.
  • Rinsing can include rinsing with a first rinse composition after washing and rinsing with a second rinse composition before drying.
  • the rinse composition can include either or both of the first and second rinse compositions.
  • system (1) e.g., first station (3)
  • liquid transporter (7) can be adapted and configured to immerse the object one or more times in one or more batches of the antimicrobial composition, the rinse composition, or a plurality of these compositions.
  • liquid transporter (7) can include a sprayer (not shown).
  • the sprayer can be adapted and configured to apply to and circulate around the object the antimicrobial composition, the rinse composition, or a plurality of these compositions.
  • Spraying can include sequential spraying with different or the same batches of the same composition. Spraying can occur in a spray chamber portion of system ( 1 ), e.g., first station (3).
  • the system of the invention can also include one or more dispensers (15) adapted and configured to add to a fluid employed in the system a wash concentrate, an antimicrobial concentrate, a rinse concentrate, or to add a plurality of these concentrates.
  • dispensers (15) for liquid and/or solid wash, antimicrobial, or rinse compositions, and/or for apparatus for washing and disinfecting medical or dental instruments or devices are known to those of skill of the art and can be employed in the present system.
  • Dispenser (15) for liquid compositions can dilute a liquid concentrate composition to form a second concentrate, which can be diluted again to form a use composition.
  • Dispenser (15) for liquid compositions can dilute a liquid concentrate composition directly to form a use composition.
  • Dispenser (15) for solid compositions can dissolve or suspend a solid composition to form a liquid concentrate, which can be diluted to form a use composition.
  • Dispenser (15) for solid compositions can dissolve or suspend a solid composition directly to form a use composition.
  • Dryer (9) can be constructed in any of several configurations.
  • dryer (9) can be adapted and configured to dry the object while the object is in system (1), e.g., at first station (3). Dryer (9) can dry the object using drying forces such as radiant heat, a circulated, dry gas (e.g. heated air), or steam.
  • dryer (9) comprises a blower (not shown) adapted and configured to circulate a heated gas within system (1), e.g., at first station (3).
  • Dryer (9) can vent used heated gas to the surroundings of system (1), or can remove moisture from the used heated gas and reuse this dried gas.
  • the system of the invention can include an apparatus (49) adapted and configured to add the sterilant to system (1), e.g., at first station (3), preferably as a component of dryer (9).
  • the apparatus (49) can add sterilant before, during, or after drying.
  • a sterilant employed after drying does make the object wet. Exposing to sterilant before or after drying can occur in the same location or station as drying, or in a different location or station from drying.
  • An apparatus (49) adapted and configured to add the sterilant can include an injector (17) adapted and configured to add sterilant to system (1), e.g., at first station (3).
  • the sterilant can be either a gas or a liquid, preferably a gas.
  • injector (17) can include a pressure release valve (19) adapted and configured to release the gaseous sterilant from a pressurized vessel (21) into system (1), e.g., at first station (3).
  • a system employing a gaseous sterilant will also include a vent (23) adapted and configured to evacuate sterilant gas from system (1), e.g., at first station (3).
  • Vent (23) can expel evacuated gas to the surroundings of system (1), or send the evacuated gas through a filter for reuse or retention in system (1).
  • system (1) employs a gas tight chamber, or a chamber under negative pressure, for the gaseous sterilant, and employs filters or other ventilation systems that prevent exposure of an operator or bystander to the gaseous sterilant.
  • System (1) can also include one or more temperature control systems that heat and/or cool and regulate the temperature of the wash, rinse, and/or antimicrobial compositions, or of the air or other fluid employed for drying.
  • the temperature control systems can include in line or tank heaters, such as coil heaters, for the wash, rinse, and/or antimicrobial compositions, or for water employed to form these compositions.
  • the temperature control systems can include thermostats or other sensors that detect the temperature of a composition or other fluid and that signal a processor or other controller to regulate the temperature of the composition or other fluid.
  • System (1) can also include mechanical, analog, or digital control apparatus to start and stop in the appropriate sequence the various components of the system, such as liquid transporters (e.g., sprayers or pumps), conveyors, if any, sonicators, and dryers.
  • liquid transporters e.g., sprayers or pumps
  • conveyors e.g., conveyors
  • sonicators e.g., sonicators
  • dryers e.g., sonicators, and dryers.
  • the control apparatus can include systems for determining which of the several sonic, wash, rinse, and antimicrobial cycles to run for a particular object or rack of objects.
  • Such a control apparatus can include a bar code reader that reads a bar code on a rack or object, which details the cycles to run for that rack or object.
  • the control apparatus can also include safety mechanisms linked to one or more doors of system (1) that prevent system (1) from running unless the doors are sealed or closed, or if unauthorized objects are in system (1).
  • System (1) can also include a load apparatus or unload apparatus.
  • Load apparatus supports and moves objects or racks containing objects into system (1).
  • Unload apparatus receives racks exiting system (1).
  • the unload apparatus can be coupled to the load apparatus to return racks to the load apparatus, for example, by conveyor.
  • System ( 1 ) can also include a conveyor (31), which can move the obj ect or a rack containing the object through system (1).
  • an operator can place the object or a rack containing the object into system (1), and remove it from system (1).
  • System (1) can also include one or more emitters (51).
  • Emitter (51) can impact the object with energy, such as microwave or light energy, inside or outside the system.
  • Emitter (51) can be adapted and configured to impact the object with energy before circulation of wash composition.
  • emitter (51) can impact the object with energy before it is placed in to a station or chamber to reduce the burden of microbes or soil.
  • emitter (51) can provide energy throughout the chamber or station before wash composition is circulated.
  • Emitter (51) can be adapted and configured to impact the object with energy during circulation of the wash composition.
  • emitter (51) can impact the object with light, preferably ultraviolet light, energy from throughout the wash composition.
  • emitter (51) can impact the object with light, preferably ultraviolet light, energy from a point in the chamber or station concurrently with circulation of the wash composition.
  • Emitter can be adapted and configured to impact the object with energy during or after circulation of the antimicrobial composition.
  • Such an emitter (51) can impact the object with, for example, light or microwave energy, preferably in the presence of the antimicrobial composition.
  • emitter (51) can impact the object with light, preferably ultraviolet light, energy from throughout the antimicrobial composition.
  • emitter (51 ) can impact the object with light, preferably ultraviolet light, energy or microwave energy from a point in the chamber or station after with circulation of the antimicrobial composition.
  • Emitter (51) can be adapted and configured to impact the object with energy before, after, or during operation of the dryer. For example, after circulation of (second) rinse composition, emitter (51) can impact the object with energy. For example, during operation of the dryer, emitter (51) can impact the object with energy. For example, after operation of the dryer, emitter (51) can impact the object with energy. Such impacting with energy before, during, or after operation of the dryer can substitute for or, preferably, supplement, exposing the object to gaseous sterilant.
  • system (1) includes sonicator (5), liquid transporter (7), and dryer (9).
  • Sonicator (5) is adapted and configured to impact the object with ultrasonic energy.
  • Liquid transporter (7) is adapted and configured to circulate around the object a wash composition, an antimicrobial composition, and a rinse composition.
  • Dryer (9) is adapted and configured to dry the object, preferably in the presence of a sterilant.
  • sonicator (5) can take on a variety of configurations.
  • sonicator (5) can be adapted and configured to provide ultrasonic energy throughout fluid in system (1).
  • sonicator (5) can be adapted and configured to provide ultrasonic energy from a point within system (1).
  • System (1) can also include holder (11), which can be adapted and configured to support the object, with sonicator (5) including an ultrasonic probe adjacent a position taken by the object in holder (11).
  • sonicator (5) includes an irrigated probe.
  • Sonicator (5) can, optionally, also include a second sonicator (41) located on the exterior of system (1).
  • Second sonicator (41) can include a probe outside the system (1).
  • second sonicator (41) includes an irrigated probe.
  • the system also includes holder (11) adapted and configured to support the object adjacent the probe of second sonicator (41).
  • system (1) includes sonicator (5), liquid transporter (7,) and dryer (9).
  • Sonicator (5) is adapted and configured to impact the object with ultrasonic energy.
  • Liquid transporter (7) is adapted and configured to circulate around the object a wash composition, an antimicrobial composition, and a rinse composition.
  • Dryer (9) is adapted and configured to dry the object, preferably in the presence of a sterilant.
  • sonicator (5) can be adapted and configured to provide ultrasonic energy throughout fluid in the system.
  • Sonicator (5) and liquid transporter (7) can be adapted and configured to immerse the object in the wash composition and apply ultrasonic energy to the immersed object.
  • System (1) can also include a holder (11). Holder (11) is preferably adapted and configured to support the object.
  • sonicator (5) preferably includes an ultrasonic probe adjacent a position taken by the object in the holder (11).
  • the ultrasonic probe can be an irrigated probe.
  • System (1) can also include a second sonicator (41).
  • Second sonicator (41) can be adapted and configured to provide ultrasonic energy from a probe on the exterior of the system (1). This probe can also be an irrigated probe.
  • a system (1) with a second sonicator (41) typically also includes a holder (11) adapted and configured to support the object adjacent the second sonicator probe.
  • system (1) includes a station, e.g., first station (3), holder (11), sonicator (5), liquid transporter (7), dispenser (15), dryer (9), injector (17), and vent (23).
  • Holder (11) extends within the station, e.g., first station (3), and is adapted and configured to support the object.
  • Sonicator (5) is adapted and configured to impact the object in the station with ultrasonic energy.
  • Liquid transporter (7) is adapted and configured to circulate at the station and around the object a wash composition and a rinse composition.
  • Liquid transporter (7) includes a sprayer adapted and configured to apply the rinse composition to the object.
  • Dispenser (15) is adapted and configured to add a wash concentrate and a rinse concentrate.
  • Dryer (9) is adapted and configured to dry the object in the station, preferably in the presence of the sterilant.
  • Injector (17) includes a pressure release valve adapted and configured to release a gaseous sterilant from a pressurized vessel into the station.
  • the vent (23) is adapted and configured to evacuate sterilant gas from the station.
  • Sonicator (5) can be adapted and configured to provide ultrasonic energy throughout fluid in the first station.
  • sonicator (5) can be adapted and configured to provide ultrasonic energy from a point within the station.
  • system (1) includes a station, e.g., first station (3), holder (11), sonicator (5), liquid transporter (7), and dryer (9).
  • Holder (11) extends within the station, e.g., first station (3), and is adapted and configured to support the object.
  • Sonicator (5) is adapted and configured to provide ultrasonic energy from a point within the station.
  • Liquid transporter (7) is adapted and configured to circulate at the station and around the object a wash composition and a rinse composition.
  • Dryer (9) is adapted and configured to dry the object in the station, preferably in the presence of the sterilant.
  • system (1) includes a station, e.g., first station (3), sonicator (5), liquid transporter (7), and dryer (9).
  • Sonicator (5) is adapted and configured to provide ultrasonic energy throughout fluid in the station.
  • Liquid transporter (7) is adapted and configured to circulate at the station and around the object a wash composition and a rinse composition.
  • Dryer (9) is adapted and configured to dry the object in the station, preferably in the presence of the sterilant.
  • System (1) can include two, three, four, five, six, or more stations.
  • System (1) can include first station (3) and a second station (25).
  • first station (3) includes sonicator (5) and is adapted and configured to circulate at first station (3) and around the object the wash composition, the antimicrobial composition, the rinse composition, or a plurality of these compositions.
  • second station (25) is typically adapted and configured to circulate at second station (25) and around the object the antimicrobial composition, the rinse composition, or a plurality of these compositions.
  • Sonicator (5), liquid transporter (7), holder (11) and other system (1) components can adopt configurations described hereinabove for system (1) or one station embodiments.
  • first station (3) and second station (25) can each circulate one or more of the same compositions, this generally does not occur.
  • first station (3), sonicator (5), and liquid transporter (7) are adapted and configured to immerse the object in the wash composition and apply ultrasonic energy to the immersed object within first station (3), as described hereinabove.
  • Second station (25) and liquid transporter (7) can be adapted and configured to immerse the object in the antimicrobial composition, the rinse composition, or a plurality of these compositions.
  • liquid transporter (7) can include a sprayer (not shown).
  • the sprayer can be adapted and configured to apply to the object at second station (25) the antimicrobial composition, the rinse composition, or a plurality of these compositions. Spraying can occur in a spray chamber portion of second station (25), which can be the entirety of this station.
  • Liquid transporter (7) can include a pump and a valve adapted and configured to circulate at second station (25) and around the object the antimicrobial composition, the rinse composition, or both compositions; to add to second station (25) the antimicrobial composition, the rinse composition, or both compositions; and to remove from second station (25) the antimicrobial composition, the rinse composition, or both compositions.
  • a two station embodiment can also include a dispenser (15) adapted and configured to add an antimicrobial concentrate and/or a rinse concentrate to fluid employed at second station (25).
  • liquid transporter (7) can be adapted and configured to circulate fluids at second station (25).
  • a liquid transporter (7) can include a single system that circulates fluids in both first station (3) and second station (25) or separate subsystems for each of the stations.
  • liquid transporter (7) can include a first transporter subsystem (27), which circulates fluids at first station (3), and a second transporter subsystem (29), which circulates fluids at second station (25).
  • the system of the invention can include distinct liquid transporters (7) for each system (1).
  • second station (25) can be adapted and configured to circulate the rinse composition.
  • first station (3) can preferably be adapted and configured to circulate the wash composition and/or the antimicrobial composition.
  • Liquid transporter (7) circulates rinse composition at second station (25) and over the object.
  • first station (3) can be adapted and configured to circulate around the object the wash composition, the antimicrobial composition, and first rinse composition.
  • First station (3) preferably can be adapted and configured to sequentially circulate, in this order, the wash composition, the first rinse composition, and the antimicrobial composition.
  • the second station (25) can be adapted and configured to circulate around the object second rinse composition.
  • Second station (25) and liquid transporter (7) can be adapted and configured to immerse the object in the rinse composition.
  • liquid transporter (7) can include a sprayer.
  • the sprayer can be adapted and configured to apply the rinse composition to the object. Spraying can occur in a spray chamber portion of second station (25), which can be the entirety of this system (1).
  • Liquid transporter (7) can include a pump and a valve adapted and configured to circulate rinse composition at second station (25), to add rinse composition to second station (25), and to remove rinse composition from second station (25).
  • This embodiment can also include a dispenser (15) adapted and configured to add a rinse concentrate to fluid employed in the second station.
  • second station (25) can be adapted and configured to circulate the antimicrobial composition and the rinse composition.
  • first station (3) can preferably be adapted and configured to circulate the wash composition.
  • Liquid transporter (7) circulates antimicrobial composition and rinse composition at second station (25) and over the object.
  • first station (3) can be adapted and configured to circulate around the object the wash composition and first rinse composition.
  • Second station (25) can be adapted and configured to circulate around the object the antimicrobial composition and second rinse composition.
  • the embodiment employs sequential circulation.
  • liquid transporter (7) can be adapted and configured to sequentially circulate at the second station the antimicrobial composition followed by the rinse composition.
  • second station (25) and liquid transporter (7) can be adapted and configured to immerse the object in the antimicrobial composition and the rinse composition, preferably sequentially.
  • liquid transporter (7) can include a sprayer (not shown). The sprayer can be adapted and configured to apply to the object the antimicrobial composition and the rinse composition, preferably sequentially. Spraying can occur in a spray chamber portion of second station (25), which can be the entirety of this station.
  • Liquid transporter (7) can include a pump and a valve adapted and configured to circulate at the second station the antimicrobial composition, the rinse composition, or both compositions; to add to the second station the antimicrobial composition, the rinse composition, or both compositions; and to remove from the second station the antimicrobial composition, the rinse composition, or both compositions.
  • This embodiment can also include a dispenser (15) adapted and configured to add an antimicrobial concentrate and/or a rinse concentrate to fluid employed in the second station.
  • second station (25) can include dryer (9). Various features of dryer (9) are described hereinabove. Second station (25) can also include the apparatus (49) that adds sterilant to and vents sterilant from system (1). Such apparatus (49) is also described hereinabove.
  • second station (25) includes dryer (9) and does not include a liquid transporter (7).
  • first station (3) includes liquid transporter (7), sonicator (5), and other apparatus that washes, accomplishes antimicrobial treatment, and rinses (as described hereinabove).
  • the two stations can occupy any of several locations with respect to one another.
  • first station (3) and second station (25) can occupy the same space or chamber, but employ different apparatus for circulating compositions.
  • system (1) can include a single housing. An operator loads the object(s) into the housing, the object remains stationary in the housing, and first and second stations (3 and 25) circulate compositions around and through the object.
  • first and second stations (3 and 25) can employ first and second stations (3 and 25) to apply compositions that benefit from different types of application (e.g., immersing and spraying), or that benefit from liquid handling apparatus (e.g. liquid transporter (7) including pumps, piping, and the like) made from different materials or to different specifications.
  • first and second stations (3 and 25) can include a (the same) spray chamber, or, for example, a (the same) tub, tank, or bath.
  • first station (3) and second station (25) can occupy overlapping spaces.
  • first station (3) and second station (25) can occupy overlapping locations in a housing of a pass-through or tunnel unit.
  • first station (3) and second station (25) can occupy overlapping locations in a housing of a pass-through or tunnel unit.
  • first station (3) circulates a composition around and through the object.
  • second station (25) As the object moves further through the housing, it encounters a region where second station (25), but not first station (3), circulates a composition around the object.
  • first station (3) and second station (25) can occupy distinct spaces.
  • first station (3) and second station (25) can occupy distinct locations in a housing of a pass-through or tunnel unit. As the object translocates through the housing, it first encounters a location where first station (3) circulates a composition around and through the object. Then, the object moves further through the housing, it encounters a distinct location where second station (25), but not first station (3), circulates a composition around and through the object. With such distinct locations, an object would not encounter a region where it simultaneously contacts both of the compositions circulated by first station (3) and by second station (25).
  • first station (3) and second station (25) can occupy distinct housings.
  • first station (3) can include a tub, tank or bath suitable for immersing the object
  • second station (25) can include a spray chamber suitable for spraying the object or a gas-tight chamber suitable for exposing the object to a gaseous sterilant.
  • a two station embodiment can include an apparatus for moving the object from first station (3) to second station (25).
  • the system can include a conveyor (31) adapted and configured to translocate the object between first and second stations (3 and 25) and/or through system (1).
  • First station (3) and second station (25) can occupy the same or overlapping spaces.
  • conveyor (31) need not translocate the object from one station to the other. In such a configuration, conveyor (31) can translocate the object in and out of, or through, system (1).
  • conveyor (31) can translocate the object from a location preferable for circulating a composition at first station (3) to a position preferably for circulating a composition at second station (25). In a position preferable for circulating a composition at first station (3), a composition circulating at second station (25) can still contact the object, and vice versa. In this configuration, conveyor (31) can translocate the object in and out of, or through, system (1). First station (3) and second station (25) can occupy distinct spaces, and, in such an embodiment, conveyor (31) can translocate the object from one station to the other. In this configuration, conveyor (31) can translocate the object in and out of, or through, system (1).
  • a two station embodiment can include one or more emitters (51 ) as described hereinabove for the system and one station embodiments.
  • system (1) includes first station (3) and second station (25), sonicator (5), liquid transporter (7), and dryer (9).
  • Sonicator (5) is adapted and configured to impact the object at first station (3) with ultrasonic energy.
  • Liquid transporter (7) is adapted and configured to circulate at first station (3) and around the object a wash composition, an antimicrobial composition, a rinse composition, or a plurality of these compositions.
  • Dryer (9) is adapted and configured to dry the object at the second station (25), preferably in the presence of the sterilant.
  • sonicator (5) can take on a variety of configurations.
  • sonicator (5) can be adapted and configured to provide ultrasonic energy throughout fluid in the first station.
  • sonicator (5) can be adapted and configured to provide ultrasonic energy from a point within the station.
  • System (1) can also include holder (11), which can be adapted and configured to support the object, with sonicator (5) including an ultrasonic probe adjacent a position taken by the object in holder (11).
  • sonicator (5) includes an irrigated probe.
  • Sonicator (5) can, optionally, also include a second sonicator (41) located on the exterior of system (1), e.g. first station (3).
  • Second sonicator (41) can include a probe outside the system (1), e.g., first station (3).
  • second sonicator (41) includes an irrigated probe.
  • the system also includes holder (11) adapted and configured to support the object adjacent the probe of second sonicator (41).
  • liquid transporter (7) can circulate the wash, rinse, and antimicrobial compositions at the two stations (3 and 25) in any of several combinations.
  • liquid transporter (7) can be adapted and configured to circulate at first station (3) and around the object the wash composition, and to circulate at second station (25) and around the object the antimicrobial composition and the rinse composition.
  • liquid transporter (7) can circulate at first station (3) and around the object the wash composition and a first rinse composition, and circulate at the second station (25) and around the object the antimicrobial composition and a second rinse composition.
  • liquid transporter can be adapted and configured to circulate at first station (3) and around the object the wash composition; and to circulate at the second station (25) and around the object a first rinse composition, the antimicrobial composition, and a second rinse composition.
  • liquid transporter (7) can be adapted and configured to circulate at first station (3) and around the object the wash composition and the antimicrobial composition, and to circulate at second station (25) and around the object the rinse composition.
  • liquid transporter (7) can be adapted and configured to circulate at first station (3) and around the object the wash composition, a first rinse composition, and the antimicrobial composition; and to circulate at second station (25) and around the object a second rinse composition.
  • System (1) can include first station (3), second station (25), and a third station (33).
  • first station (3) includes sonicator (5) and is adapted and configured to circulate at first station (3) and around the object the wash composition, the antimicrobial composition, the rinse composition, or a plurality of these compositions.
  • second station (25) is typically adapted and configured to circulate at second station (25) and around the object the antimicrobial composition, the rinse composition, or a plurality of these compositions.
  • third station (33) is typically adapted and configured to circulate at third station (33) and around the object the antimicrobial composition, the rinse composition, or a plurality of these compositions.
  • first station (3) and second station (25) can each circulate one or more of the same compositions, this generally does not occur.
  • first station (3) and third station (33) can each circulate one or more of the same compositions, this generally does not occur.
  • second station (25) and third station (33) can each circulate one or more of the same compositions, this generally does not occur.
  • Sonicator (5), liquid transporter (7), holder (11) and other system (1) components can adopt configurations described hereinabove for system (1) or one and two station embodiments.
  • first station (3), sonicator (5), and liquid transporter (7) are adapted and configured to immerse the object in the wash composition and apply ultrasonic energy to the immersed object at first station (3), as described hereinabove.
  • second station (25) is adapted and configured to circulate the antimicrobial composition, the rinse composition, or a plurality of these compositions, as described hereinabove.
  • Third station (33) and liquid transporter (7) can be adapted and configured to immerse the object in the antimicrobial composition, the rinse composition, or a plurality of these compositions.
  • liquid transporter (7) can include a sprayer (not shown).
  • the sprayer can be adapted and configured to apply to the object at third station (33) the antimicrobial composition, the rinse composition, or a plurality of these compositions. Spraying can occur in a spray chamber portion of third station (33), which can be the entirety of this station.
  • Liquid transporter (7) can include a pump and a valve adapted and configured to circulate at third station (33) the antimicrobial composition, the rinse composition, or both compositions; to add to third station (33) the antimicrobial composition, the rinse composition, or both compositions; and to remove from third station (33) the antimicrobial composition, the rinse composition, or both compositions.
  • a three station embodiment can also include a dispenser (15) adapted and configured to add an antimicrobial concentrate and/or a rinse concentrate to fluid employed at third station (33).
  • liquid transporter (7) can be adapted and configured to circulate fluids at third station (33) and around the object.
  • Such a liquid transporter (7) can include a single system that circulates fluids at first station (3), second station (25), and third station (33), or separate subsystems for different stations.
  • liquid transporter (7) can include first transporter subsystem (27), which circulates fluids at first station (3), second transporter subsystem (29), which circulates fluids at second station (25), and/or third transporter subsystem (35), which circulates fluids at third station (33).
  • the system of the invention can include distinct liquid transporters (7) for each station. Features of liquid transporter (7) are described hereinabove.
  • third station (33) can be adapted and configured to circulate around the object the rinse composition.
  • first station (3) and second station (25) can preferably be adapted and configured to circulate around the object the wash composition and/or the antimicrobial composition.
  • Liquid transporter (7) circulates rinse composition at third station (33) and around the object.
  • third station (33) and liquid transporter (7) can be adapted and configured to immerse the object in the rinse composition.
  • liquid transporter (7) can include a sprayer.
  • the sprayer can be adapted and configured to apply the rinse composition to the object. Spraying can occur in a spray chamber portion of third station (33), which can be the entirety of this station.
  • Liquid transporter (7) can include a pump and a valve adapted and configured to circulate rinse composition at third station (33), to add rinse composition to third station (33), and to remove rinse composition from third station (33).
  • This embodiment can also include a dispenser (15) adapted and configured to add a rinse concentrate to fluid employed at third station (33).
  • third station (33) can be adapted and configured to circulate around the object the antimicrobial composition and the rinse composition.
  • first station (3) can preferably be adapted and configured to circulate around the object the wash composition.
  • Second station (25) can be adapted and configured to circulate around the object wash and/or antimicrobial compositions.
  • Liquid transporter (7) circulates antimicrobial composition and rinse composition at third station (33) and around the object.
  • the embodiment employs sequential circulation.
  • third station (33) and liquid transporter (7) can be adapted and configured to immerse the object in the antimicrobial composition and the rinse composition, preferably sequentially.
  • liquid transporter (7) can include a sprayer (not shown).
  • the sprayer can be adapted and configured to apply to the object the antimicrobial composition and the rinse composition, preferably sequentially. Spraying can occur in a spray chamber portion of third station (33), which can be the entirety of this station.
  • Liquid transporter (7) can include a pump and a valve adapted and configured to circulate at the third station (33) the antimicrobial composition, the rinse composition, or both compositions; to add to the third station (33) the antimicrobial composition, the rinse composition, or both compositions; and to remove from the third station (33) the antimicrobial composition, the rinse composition, or both compositions.
  • This embodiment can also include a dispenser (15) adapted and configured to add an antimicrobial concentrate and/or a rinse concentrate to fluid employed in the third station.
  • third station (33) can include dryer (9). Various features of dryer (9) are described hereinabove. Third station (33) can also include the apparatus (49) that adds sterilant to and vents sterilant from system (1). Such apparatus (49) is also described hereinabove. In an embodiment, third station (33) includes dryer (9) and does not include a liquid transporter (7). In this embodiment, first station (3) and/or second station (25) include liquid transporter (7), sonicator (5), and other apparatus that washes, accomplishes antimicrobial treatment, and rinses (as described hereinabove).
  • first station (3), second station (25), and third station (33) can occupy the same space, but employ different apparatus for circulating compositions.
  • This embodiment can employ a configuration analogous to the configuration described hereinabove for two station embodiments.
  • first station (3), second station (25), and/or third station (33) can occupy overlapping spaces.
  • third station (33) and second station (25) occupy overlapping spaces in a configuration analogous to that described hereinabove for two station embodiments.
  • first station (3), second station (25), and third station (33) can occupy distinct spaces.
  • Such configurations are analogous to those described hereinabove for two station embodiments.
  • second and third stations (25 and 33) or first, second, and third stations (3, 25, and 33) can include a (the same) spray chamber, or, for example, a (the same) tub, tank, or bath.
  • a three station embodiment can include an apparatus for moving the object from first station (3) to second station (25), from second station (25) to third station (33), among any other combination of stations, and/or through system (1).
  • system (1) can include a conveyor (31) adapted and configured to move the object between first, second, and/or third stations (3, 25, and 33), and/or through system (1).
  • the three station embodiments can employ conveyor systems with capabilities and structures analogous to those described hereinabove for two station embodiments.
  • an operator moves the object between first, second, and/or third stations (3, 25, and 33).
  • a three station embodiment can include one or more emitters (51) as described hereinabove for the system and one station embodiments.
  • system (1) includes first station (3), second station (25), third station (33), sonicator (5), liquid transporter (7), and dryer (9).
  • Sonicator (5) is adapted and configured to impact the object at first station (3) with ultrasonic energy.
  • Liquid transporter (7) is adapted and configured to circulate at first station (3) and around the object a wash composition, an antimicrobial composition, a rinse composition, or a plurality of these compositions.
  • Liquid transporter (7) is adapted and configured to circulate at second station (25) and around the object an antimicrobial composition, a rinse composition, or a plurality of these compositions.
  • Dryer (9) is adapted and configured to dry the object at the third station (33), preferably in the presence of the sterilant.
  • sonicator (5) can take on the variety of configurations described hereinabove for system (1), one, and/or two station embodiments.
  • liquid transporter (7), or its subsystems can circulate the wash, rinse, and antimicrobial compositions at the three stations (3, 25, and 33) in any of several combinations.
  • first station (3) includes sonicator (5).
  • liquid transporter (7) can be adapted and configured to circulate at first station (3) and around the object the wash composition, a first rinse composition and the antimicrobial composition; and to circulate at second station (25) and around the object a second rinse composition.
  • liquid transporter (7) can be adapted and configured to circulate at first station (3) and around the object the wash composition and a first rinse composition, and to circulate at second station (25) and around the object the antimicrobial composition and a second rinse composition.
  • liquid transporter (7) can be adapted and configured to circulate at first station (3) and around the object the wash composition; and to circulate at second station (25) and around the object a first rinse composition, the antimicrobial composition, and a second rinse composition.
  • liquid transporter (7) can be adapted and configured to circulate at first station (3) and around the object the wash composition and a first rinse composition, to circulate at second station (25) and around the object the antimicrobial composition, and to circulate at third station (33) and around the object a second rinse composition.
  • liquid transporter (7) can be adapted and configured to circulate at first station (3) and around the object the wash composition, to circulate at second station (25) and around the object a first rinse composition and the antimicrobial composition, and to circulate at third station (33) and around the object a second rinse composition.
  • System (1) can include first station (3), second station (25), third station (33), and a fourth station (37).
  • first station (3) includes sonicator (5) and is adapted and configured to circulate at first station (3) and around the object the wash composition, the antimicrobial composition, the rinse composition, or a plurality of these compositions.
  • second station (25) is typically adapted and configured to circulate at second station (25) and around the object the antimicrobial composition, the rinse composition, or a plurality of these compositions.
  • third station (33) is typically adapted and configured to circulate at third station (33) and around the object the antimicrobial composition, the rinse composition, or a plurality of these compositions.
  • fourth station (37) can be adapted and configured to circulate at fourth station (37) and around the object the antimicrobial composition, the rinse composition, or a plurality of these compositions. Although one or more of the stations (3, 25, 33 and 37) can each circulate one or more of the same compositions, this generally does not occur.
  • Sonicator (5), liquid transporter (7), holder (11) and other system (1) components can adopt configurations described hereinabove for system (1) or one, two, and three station embodiments.
  • first station (3), sonicator (5), and liquid transporter (7) are adapted and configured to immerse the object in the wash composition and apply ultrasonic energy to the immersed object at first station (3), as described hereinabove.
  • second station (25) is adapted and configured to circulate around the object the antimicrobial composition, the rinse composition, or a plurality of these compositions, as described hereinabove.
  • third station (33) is adapted and configured to circulate around the object the antimicrobial composition, the rinse composition, or a plurality of these compositions, as described hereinabove.
  • Fourth station (37) and liquid transporter (7) can be adapted and configured to immerse the object in the antimicrobial composition, the rinse composition, oo:r a plurality of these compositions.
  • liquid transporter (7) can include a sprayer (not shown). The sprayer can be adapted and configured to apply to the object at fourth station (37) the antimicrobial composition, the rinse composition, or a plurality of these compositions. Spraying can occur in a spray chamber portion of fourth station (37), which can be the entirety of this station.
  • Liquid transporter (7) can include a pump and a valve adapted and configured to circulate at fourth station (37) and around the object the antimicrobial composition, the rinse composition, or both compositions; to add to fourth station (37) the antimicrobial composition, the rinse composition, or both compositions; and to remove from fourth station (37) the antimicrobial composition, the rinse composition, or both compositions.
  • a four station embodiment can also include a dispenser (15) adapted and configured to add an antimicrobial concentrate and/or a rinse concentrate to fluid employed at fourth station (37).
  • liquid transporter (7) can be adapted and configured to circulate fluids at fourth station (37).
  • a liquid transporter (7) can include a single system that circulates fluids at first station (3), second station (25), third station (33), and fourth station (37), or separate subsystems for different stations.
  • liquid transporter (7) can include first transporter subsystem (27), which circulates fluids at first station (3), second transporter subsystem (29), which circulates fluids at second station (25), third transporter subsystem (35), which circulates fluids at third station (33), and/or fourth transporter subsystem (39), which circulates fluids at fourth station (37).
  • the system of the invention can include distinct liquid transporters (7) for each station.
  • liquid transporter (7) can be adapted and configured to circulate around the object the rinse composition.
  • first station (3) can preferably be adapted and configured to circulate around the object the wash composition.
  • second station (25) and third station (33) can preferably be adapted and configured to circulate around the object the wash composition and/or the antimicrobial composition.
  • Liquid transporter (7) circulates rinse composition at fourth station (37) and around the object.
  • fourth station (37) and liquid transporter (7) can be adapted and configured to immerse the object in the rinse composition.
  • liquid transporter (7) can include a sprayer.
  • the sprayer can be adapted and configured to apply the rinse composition to the object. Spraying can occur in a spray chamber portion of fourth station (37), which can be the entirety of this station.
  • Liquid transporter (7) can include a pump and a valve adapted and configured to circulate rinse composition at fourth station (37) and around the object, to add rinse composition to fourth station (37), and to remove rinse composition from fourth station (37).
  • This embodiment can also include a dispenser (15) adapted and configured to add a rinse concentrate to fluid employed at fourth station (37).
  • fourth station (33) can be adapted and configured to circulate around the object the antimicrobial composition and the rinse composition.
  • first station (3) can preferably be adapted and configured to circulate around the object the wash composition.
  • Second station (25) can be adapted and configured to circulate around the object wash and/or antimicrobial compositions.
  • Third station (33) can be adapted and configured to circulate around the object antimicrobial and/or rinse compositions.
  • Liquid transporter (7) circulates antimicrobial composition and rinse composition at fourth station (37) and around the object.
  • the embodiment employs sequential circulation.
  • fourth station (33) and liquid transporter (7) can be adapted and configured to immerse the object in the antimicrobial composition and the rinse composition, preferably sequentially.
  • liquid transporter (7) can include a sprayer (not shown). The sprayer can be adapted and configured to apply to the object the antimicrobial composition and the rinse composition, preferably sequentially.
  • Liquid transporter (7) can include a pump and a valve adapted and configured to circulate at fourth station (37) the antimicrobial composition, the rinse composition, or both compositions; to add to fourth station (37) the antimicrobial composition, the rinse composition, or both compositions; and to remove from fourth station (37) the antimicrobial composition, the rinse composition, or both compositions.
  • This embodiment can also include a dispenser (15) adapted and configured to add an antimicrobial concentrate and/or a rinse concentrate to fluid employed at fourth station (37).
  • fourth station (37) can include dryer (9). Various features of dryer (9) are described hereinabove. Fourth station (37) can also include the apparatus (49) that adds sterilant to and vents sterilant from system (1). Such apparatus (49) is also described hereinabove.
  • fourth station (37) includes dryer (9) and does not include a liquid transporter (7).
  • first station (3), second station (25), and/or third station (33) include liquid transporter (7), sonicator (5), and other apparatus that washes, accomplishes antimicrobial treatment, and rinses (as described hereinabove).
  • the four stations can occupy any of several locations with respect to one another.
  • first station (3), second station (25), third station (33), and fourth station (37) can occupy the same space, but employ different apparatus for circulating compositions.
  • This embodiment can employ configurations analogous to the configuration described hereinabove for two and three station embodiments.
  • first station (3), second station (25), third station (33), and/or fourth station (37) can occupy overlapping spaces.
  • third station (33) and fourth station (37) occupy overlapping spaces in a configuration analogous to that described hereinabove for two and three station embodiments.
  • first station (3), second station (25), third station (33), and/or fourth station (37) can occupy distinct spaces.
  • Such configurations are analogous to those described hereinabove for two and three station embodiments.
  • third and fourth stations (33 and 37); second, third, and fourth stations (25, 33, and 37); or first second, third, and fourth stations (3, 25, 33, and 37) can include a (the same) spray chamber, or, for example, a (the same) tub, tank, or bath.
  • a four station embodiment can include an apparatus for moving the object from first station (3) to second station (25), from second station (25) to third station (33), from third station (33) to fourth station (37), among any other combination of stations, and/or through system (1).
  • system (1) can include a conveyor (31) adapted and configured to move the object between first, second, third, and/or fourth stations (3, 25, 33, and 37), and/or through system (1).
  • the four station embodiments can employ conveyor systems with capabilities and structures analogous to those described hereinabove for two and three station embodiments.
  • an operator moves the object between first, second, third, and/or fourth stations (3, 25, 33, and 37).
  • a four station embodiment can include one or more emitters (51) as described hereinabove for the system and one station embodiments.
  • system (1) includes first station (3), second station (25), third station (33), fourth station (37), sonicator (5), liquid transporter (7), and dryer (9).
  • Sonicator (5) is adapted and configured to impact the object at first station (3) with ultrasonic energy.
  • Liquid transporter (7) is adapted and configured to circulate at first station (3) and around the object a wash composition, an antimicrobial composition, a rinse composition, or a plurality of these compositions.
  • Liquid transporter (7) is adapted and configured to circulate at second station (25) and around the object an antimicrobial composition, a rinse composition, or a plurality of these compositions.
  • Liquid transporter (7) is adapted and configured to circulate at third station (33) and around the object an antimicrobial composition, a rinse composition, or a plurality of these compositions.
  • Dryer (9) is adapted and configured to dry the object at the fourth station (37), preferably in the presence of the sterilant.
  • sonicator (5) can take on the variety of configurations described hereinabove for system (1), one, two, and/or three station embodiments.
  • liquid transporter (7) can circulate the wash, rinse, and antimicrobial compositions at the four stations (3, 25, 33, and 37) in any of several combinations.
  • first station (3) includes sonicator (5).
  • liquid transporter (7) can be adapted and configured to circulate at first station (3) and around the object the wash composition, to circulate at second station (25) and around the object the antimicrobial composition and a first rinse composition, and to circulate at third station (33) and around the object a second rinse composition.
  • liquid transporter (7) can be adapted and configured to circulate at first station (3) and around the object the wash composition and a first rinse composition, to circulate at second station (25) and around the object the antimicrobial composition, and to circulate at third station (33) and around the object a second rinse composition.
  • liquid transporter (7) can be adapted and configured to circulate at first station (3) and around the object the wash composition, to circulate at second station (25) and around the object a first rinse composition, and to circulate at third station (33) and around the object the antimicrobial composition and a second rinse composition.
  • liquid transporter (7) can be adapted and configured to circulate at first station (3) and around the object the wash composition, to circulate at second station (25) and around the object a first rinse composition, to circulate at third station (33) and around the object the antimicrobial composition, and to circulate at fourth station (37) and around the object a second rinse composition.
  • System (1) can include first station (3), second station (25), third station (33), fourth station (37), and a fifth station (43).
  • first station (3) includes sonicator (5) and is adapted and configured to circulate at first station (3) and around the object the wash composition, the antimicrobial composition, the rinse composition, or a plurality of these compositions.
  • second station (25) is typically adapted and configured to circulate at second station (25) and around the object the antimicrobial composition, the rinse composition, or a plurality of these compositions.
  • third station (33) is typically adapted and configured to circulate at third station (33) and around the object the antimicrobial composition, the rinse composition, or a plurality of these compositions.
  • fourth station (37) can be adapted and configured to circulate at fourth station (37) and around the object the antimicrobial composition, the rinse composition, or a plurality of these compositions.
  • fifth station (43) can be adapted and configured to circulate at fifth station (43) and around the object the rinse composition, preferably a second rinse composition. Although one or more of the stations (3, 25, 33 and 37) can each circulate one or more of the same compositions, this generally does not occur.
  • Sonicator (5), liquid transporter (7), holder (11) and other system (1) components can adopt configurations described hereinabove for system (1) or one, two, three, and four station embodiments.
  • first station (3), sonicator (5), and liquid transporter (7) are adapted and configured to immerse the object in the wash composition and apply ultrasonic energy to the immersed object at first station (3), as described hereinabove.
  • First station (3) can also be adapted and configured to circulate around the object a first rinse composition.
  • second station (25) is adapted and configured to circulate around the object the antimicrobial composition, the rinse composition, or a plurality of these compositions, as described hereinabove.
  • Second station (25) can be adapted and configured to circulate around the object the first rinse composition.
  • third station (33) is adapted and configured to circulate around the object the antimicrobial composition, the rinse composition, or a plurality of these compositions, as described hereinabove.
  • fourth station (37) is adapted and configured to circulate around the object the antimicrobial composition, the rinse composition, or a plurality of these compositions, as described hereinabove.
  • Fourth station (37) can be adapted and configured to circulate around the object a second rinse composition.
  • Fifth station (43) and liquid transporter (7) can be adapted and configured to immerse the object in the rinse composition, preferably a second rinse composition.
  • liquid transporter (7) can include a sprayer (not shown).
  • the sprayer can be adapted and configured to apply to the object at fifth station (43) the rinse composition, preferably a second rinse composition. Spraying can occur in a spray chamber portion of fifth station (43), which can be the entirety of this station.
  • Liquid transporter (7) can include a pump and a valve adapted and configured to circulate at fifth station (43) and around the object the rinse composition, preferably a second rinse composition; to add to fifth station (43) the rinse composition, preferably a second rinse composition; and to remove from fifth station (43) the rinse composition, preferably a second rinse composition.
  • a five station embodiment can also include a dispenser (15) adapted and configured to add a rinse concentrate to fluid employed at fifth station (43).
  • liquid transporter (7) can be adapted and configured to circulate fluids at fifth station (43).
  • Such a liquid transporter (7) can include a single system that circulates fluids at first station (3), second station (25), third station (33), fourth station (37), and fifth station (43), or separate subsystems for different stations.
  • liquid transporter (7) can include first transporter subsystem (27), which circulates at first station (3), second transporter subsystem (29), which circulates fluids at second station (25), third transporter subsystem (35), which circulates fluids at third station (33), fourth transporter subsystem (39), which circulates fluids at fourth station (37), and/or fifth transporter subsystem (45), which circulates fluids at fifth station (43).
  • the system of the invention can include distinct liquid transporters (7) for each station.
  • fifth station (43) can be adapted and configured to circulate the rinse composition, preferably the second rinse composition.
  • first station (3) can preferably be adapted and configured to circulate the wash composition.
  • second station (25), third station (33), and fourth station (37) can preferably be adapted and configured to circulate the wash composition, the first rinse composition, and/or the antimicrobial composition.
  • Liquid transporter (7) circulates the second rinse composition at fifth station (37) and over the object.
  • fifth station (43) and liquid transporter (7) can be adapted and configured to immerse the object in the second rinse composition.
  • liquid transporter (7) can include a sprayer. The sprayer can be adapted and configured to apply the second rinse composition to the object. Spraying can occur in a spray chamber portion of fifth station (43), which can be the entirety of this station.
  • Liquid transporter (7) can include a pump and a valve adapted and configured to circulate the second rinse composition at fifth station (43), to add the second rinse composition to fifth station (43), and to remove the second rinse composition from fifth station (43).
  • This embodiment can also include a dispenser (15) adapted and configured to add a rinse concentrate to fluid employed at fifth station (43).
  • drying generally occurs at fifth station (43).
  • fifth station (43) can include dryer (9).
  • Various features of dryer (9) are described hereinabove.
  • Fifth station (43) can also include the apparatus (49) that adds sterilant to and vents sterilant from system (1).
  • apparatus (49) is also described hereinabove.
  • fifth station (43) includes dryer (9) and does not include a liquid transporter (7).
  • first station (3), second station (25), third station (33), and/or fourth station (37) include liquid transporter (7), sonicator (5), and other apparatus that washes, accomplishes antimicrobial treatment, and rinses (as described hereinabove).
  • first station (3), second station (25), third station (33), fourth station (37), and fifth station (43) can occupy the same space, but employ different apparatus for circulating compositions.
  • This embodiment can employ configurations analogous to the configuration described hereinabove for two, three, and four station embodiments.
  • one or more of first station (3), second station (25), third station (33), fourth station (37), and/or fifth station (43) can occupy overlapping spaces.
  • fourth station (37) and fifth station (43) occupy overlapping spaces in a configuration analogous to that described hereinabove for two, three, and four station embodiments.
  • first station (3), second station (25), third station (33), fourth station (37), and/or fifth station (43) can occupy distinct spaces.
  • Such configurations are analogous to those described hereinabove for two, three, and four station embodiments.
  • third, fourth and fifth stations (33, 37, and 43); second, third, fourth and fifth stations (25, 33, 37, and 43); or first second, third, fourth and fifth stations (3, 25, 33, 37, and 43) can include a (the same) spray chamber, or, for example, a (the same) tub, tank, or bath.
  • a five station embodiment can include an apparatus for moving the object from first station (3) to second station (25), from second station (25) to third station (33), from third station (33) to fourth station (37), from fourth station (37) to fifth station (43), among any other combination of stations, and/or through system (1).
  • system (1) can include a conveyor (31) adapted and configured to move the object between first, second, third, fourth, and/or fifth stations (3, 25, 33, 37, and 43), and/or through system (1).
  • the five station embodiments can employ conveyor systems with capabilities and structures analogous to those described hereinabove for two, three, and four station embodiments.
  • an operator moves the object between first, second, third, fourth, and/or fifth stations (3, 25, 33, 37, and 43).
  • a five station embodiment can include one or more emitters (51) as described hereinabove for the system and one station embodiments.
  • system (1) includes first station (3), second station (25), third station (33), fourth station (37), fifth station (43), sonicator (5), liquid transporter (7), and dryer (9).
  • Sonicator (5) is adapted and configured to impact the object at first station (3) with ultrasonic energy.
  • Liquid transporter (7) is adapted and configured to circulate at first station (3) and around the object a wash composition, an antimicrobial composition, a rinse composition, or a plurality of these compositions.
  • Liquid transporter (7) is adapted and configured to circulate at second station (25) and around the object an antimicrobial composition, a rinse composition, or a plurality of these compositions.
  • Liquid transporter (7) is adapted and configured to circulate at third station (33) and around the object an antimicrobial composition, a rinse composition, or a plurality of these compositions.
  • ' Liquid transporter (7) is adapted and configured to circulate at fourth station (37) and around the object an antimicrobial composition, a rinse composition, or a plurality of these compositions.
  • Dryer (9) is adapted and configured to dry the object at the fifth station (43), preferably in the presence of the sterilant.
  • sonicator (5) can take on the variety of configurations described hereinabove for system (1), one, two, three, and/or four station embodiments.
  • liquid transporter (7) can circulate the wash, rinse, and antimicrobial compositions at the five stations (3, 25, 33, 37, and 43) in any of several combinations.
  • first station (3) includes sonicator (5).
  • liquid transporter (7) can be adapted and configured to circulate at first station (3) and around the object the wash composition, to circulate at second station (25) and around the object a first rinse composition, to circulate at third station (33) and around the object the antimicrobial composition, to circulate at fourth station (37) and around the object a second rinse composition.
  • System (1) can include first station (3), second station (25), third station (33), fourth station (37), fifth station (43), and a sixth station (47).
  • first station (3) includes sonicator (5) and is adapted and configured to circulate at first station (3) and around the object the wash composition, the antimicrobial composition, the rinse composition, or a plurality of these compositions.
  • second station (25) is typically adapted and configured to circulate at second station (25) and around the object the antimicrobial composition, the rinse composition, or a plurality of these compositions.
  • third station (33) is typically adapted and configured to circulate at third station (33) and around the object the antimicrobial composition, the rinse composition, or a plurality of these compositions.
  • fourth station (37) can be adapted and configured to circulate at fourth station (37) and around the object the antimicrobial composition, the rinse composition, or a plurality of these compositions.
  • fifth station (43) can be adapted and configured to circulate at fifth station (43) and around the object the rinse composition, preferably a second rinse composition.
  • sixth station (47) can be adapted and configured to dry the object and/or to expose the object to gaseous sterilant.
  • Sonicator (5), liquid transporter (7), holder (11) and other system (1) components can adopt configurations described hereinabove for system (1) or one, two, three, four and five station embodiments.
  • first station (3), sonicator (5), and liquid transporter (7) are adapted and configured to immerse the object in the wash composition and apply ultrasonic energy to the immersed object at first station (3), as described hereinabove.
  • First station (3) can also be adapted and configured to circulate around the object a first rinse composition.
  • second station (25) is adapted and configured to circulate around the object the antimicrobial composition, the rinse composition, or a plurality of these compositions, as described hereinabove.
  • Second station (25) can be adapted and configured to circulate around the object the first rinse composition.
  • third station (33) is adapted and configured to circulate around the object the antimicrobial composition, the rinse composition, or a plurality of these compositions, as described hereinabove.
  • fourth station (37) is adapted and configured to circulate around the object the antimicrobial composition, the rinse composition, or a plurality of these compositions, as described hereinabove.
  • Fourth station (37) can be adapted and configured to circulate around the object a second rinse composition.
  • Fifth station (43) can be adapted and configured to circulate around the object the rinse composition, preferably a second rinse composition.
  • fifth station (43) can include dryer (9).
  • Various features of dryer (9) are described hereinabove.
  • Fifth station (43) can also include the apparatus (49) that adds sterilant to and vents sterilant from system (1). Such apparatus (49) is also described hereinabove.
  • fifth station (43) includes dryer (9) and does not include a liquid transporter (7).
  • fifth station (43) includes apparatus (49) that adds gaseous sterilant and does not include a liquid transporter (7).
  • sixth station (47) includes apparatus (49) that adds gaseous sterilant.
  • sixth station (47) includes dryer (9).
  • drying or exposing to gaseous sterilant generally occurs at sixth station (47).
  • sixth station (47) can include dryer (9).
  • Various features of dryer (9) are described hereinabove.
  • Sixth station (47) can also include the apparatus (49) that adds sterilant to and vents sterilant from system (1). Such apparatus (49) is also described hereinabove.
  • sixth station (47) includes dryer (9) and does not include a liquid transporter (7).
  • sixth station (47) includes apparatus (49) that adds gaseous sterilant and does not include a liquid transporter (7).
  • sixth station (47) includes dryer (9)
  • fifth station (43) includes apparatus (49) that adds gaseous sterilant, and vice versa.
  • sixth station (47) includes apparatus (49) that adds gaseous sterilant
  • fifth station (43) includes dryer (9).
  • first station (3), second station (25), third station (33), and/or fourth station (37) include liquid transporter (7), sonicator (5), and other apparatus that washes, accomplishes antimicrobial treatment, and rinses (as described hereinabove).
  • the six stations can occupy any of several locations with respect to one another.
  • the six stations can share or have distinct subassemblies, such as plumbing (e.g. sprayers, pumps, etc.).
  • first station (3), second station (25), third station (33), fourth station (37), fifth station (43), and sixth station can occupy the same space, but employ different apparatus for circulating compositions or for adding and venting gaseous sterilant.
  • This embodiment can employ configurations analogous to the configuration described hereinabove for two, three, four, and five station embodiments.
  • one or more of first station (3), second station (25), third station (33), fourth station (37), fifth station (43), and/or sixth station (47) can occupy overlapping spaces.
  • fifth station (43) and sixth station (47) occupy overlapping spaces in a configuration analogous to that described hereinabove for two, three, four, and five station embodiments.
  • first station (3), second station (25), third station (33), fourth station (37), fifth station (43), and/or sixth station (47) can occupy distinct spaces.
  • Such configurations are analogous to those described hereinabove for two, three, four, and five station embodiments.
  • first second, third, fourth, fifth, and sixth stations can include a (the same) spray chamber, or, for example, a (the same) tub, tank, or bath.
  • one or more of the stations occupy the same space fifth and sixth stations (43 and 47) can include a (the same) gas tight chamber or chamber under negative pressure.
  • a six station embodiment can include an apparatus for moving the object from first station (3) to second station (25), from second station (25) to third station (33), from third station (33) to fourth station (37), from fourth station (37) to fifth station (43), from fifth station (43) to sixth station (47), among any other combination of stations, and/or through system (1).
  • system (1) can include a conveyor (31) adapted and configured to move the object between first, second, third, fourth, fifth, and/or sixth stations (3, 25, 33, 37, 43, and 47), and/or through system (1).
  • the six station embodiments can employ conveyor systems with capabilities and structures analogous to those described hereinabove for two, three, four, and five station embodiments.
  • an operator moves the object between first, second, third, fourth, fifth, and/or sixth stations (3, 25, 33, 37, 43, and 47).
  • a six station embodiment can include one or more emitters (51) as described hereinabove for the system and one station embodiments.
  • system (1) includes first station (3), second station (25), third station (33), fourth station (37), fifth station (43), sixth station (47), sonicator (5), liquid transporter (7), and dryer (9).
  • Sonicator (5) is adapted and configured to impact the object at first station (3) with ultrasonic energy.
  • Liquid transporter (7) is adapted and configured to circulate at first station (3) and around the object a wash composition, an antimicrobial composition, a rinse composition, or a plurality of these compositions.
  • Liquid transporter (7) is adapted and configured to circulate at second station (25) and around the object an antimicrobial composition, a rinse composition, or a plurality of these compositions. Liquid transporter (7) is adapted and configured to circulate at third station (33) and around the object an antimicrobial composition, a rinse composition, or a plurality of these compositions. Liquid transporter (7) is adapted and configured to circulate at fourth station (37) and around the object an antimicrobial composition, a rinse composition, or a plurality of these compositions.
  • Dryer (9) is adapted and configured to dry the object at the fifth station; and apparatus (49) is adapted and configured to add to the sixth station gaseous sterilant.
  • apparatus (49) is adapted and configured to add to the fifth station gaseous sterilant; and dryer (9) is adapted and configured to dry the object at the sixth station.
  • sonicator (5) can take on the variety of configurations described hereinabove for system (1), one, two, three, four, and/or five station embodiments.
  • liquid transporter (7) can circulate the wash, rinse, and antimicrobial compositions at the four stations (3, 25, 33, and 37) in any of several combinations.
  • first station (3) includes sonicator (5).
  • liquid transporter (7) can be adapted and configured to circulate at first station (3) and around the object the wash composition, to circulate at second station (25) and around the object a first rinse composition, to circulate at third station (33) and around the object the antimicrobial composition, to circulate at fourth station (37) and around the object a second rinse composition.
  • Systems with more than six stations can include duplicates of the stations described above, can include analogous stations to those described above, or can include additional stations.
  • a sonicator represents a preferred apparatus for applying energy before and during circulation of wash composition
  • the system (1) and methods of the present invention can employ sources of energy other than a sonicator and forms of energy other than ultrasonic energy.
  • sources of energy other than a sonicator can be substituted for emitting ultrasonic energy from a point source.
  • Suitable forms of energy that can be emitted from a point source, that can contract an object, and that can aid cleaning of an object include microwave energy, continuous or pulsed light (preferably ultraviolet light) energy, and the like.
  • an emitter (51) can be substituted for sonicator (5) or second sonicator (41) in any of the embodiments described herein above.
  • Emitter (51) can include a point source of microwave energy, a point source of light energy (e.g., ultraviolet light), preferably pulsed light energy, and the like.
  • emitter (51) can include a source of ultraviolet light, such as a mercury arc lamp or a xenon flash lamp. Such lamps can provide either continuous or burst pulsed high energy ultraviolet light.
  • emitter (51) includes a source of ultraviolet light in the range of about 180 nm to about 300 nm.
  • Such an emitter can include a quartz window to shield the light source from washing composition or soil.
  • the present invention also relates to a method for washing and disinfecting an object.
  • This method can include one or more of contacting the object with a wash composition and energy, such as ultrasonic energy; treating the object with an antimicrobial composition; rinsing the object with a rinse composition; and/or drying the object, preferably in the presence of a sterilant.
  • the method of the invention includes contacting, treating, rinsing, and drying.
  • the present method includes contacting the object with ultrasonic energy and wash composition comprising antimicrobial agent, treating the object with antimicrobial composition comprising peroxycarboxylic acid, rinsing the object with rinse composition comprising an alcohol drying agent, and drying the object in the presence of sterilant comprising chlorine dioxide.
  • the method of the invention includes contacting the object with wash composition and ultrasonic energy and providing the ultrasonic energy from point source adjacent the object, treating the object with antimicrobial composition, rinsing the object with rinse composition, drying the object, and exposing the object to gaseous sterilant. This embodiment can include providing ultrasonic energy from irrigated probe adjacent the object.
  • the present method includes contacting the object with wash composition and ultrasonic energy, applying ultrasonic energy throughout the wash composition, treating the object with antimicrobial composition, rinsing the object with rinse composition, drying the object, and exposing the object to gaseous sterilant.
  • it includes applying ultrasonic energy to the object from point source adjacent the object, contacting the object with wash composition and ultrasonic energy, applying ultrasonic energy throughout the wash composition, treating the object with antimicrobial composition, rinsing the object with rinse composition, drying the object, and exposing the object to gaseous sterilant.
  • the method of the invention includes applying ultrasonic energy to the object from point source adjacent the object, contacting the object with wash composition and ultrasonic energy, applying ultrasonic energy throughout the wash composition, rinsing the object with first rinse composition, treating the object with antimicrobial composition, rinsing the object with second rinse composition, drying the object, and exposing the object to gaseous sterilant.
  • the method of the invention can be carried out using a system, such as the system of the invention.
  • the method includes carrying out contacting, treating, rinsing, and drying in single system.
  • a single system can include a first station adapted and configured to house the object; a sonicator adapted and configured to impact the object in the first station with ultrasonic energy; a liquid transporter adapted and configured to circulate at the first station and around the object wash composition, antimicrobial composition, rinse composition, or to circulate plurality of these compositions; and a dryer adapted and configured to dry the object in the presence of sterilant.
  • the present method includes contacting the object with wash composition and ultrasonic energy, treating the object with antimicrobial composition, rinsing the object with rinse composition, drying the object, and exposing the object to gaseous sterilant.
  • the method includes carrying out contacting, treating, rinsing, and drying in a system including a first station adapted and configured to house the object; a sonicator adapted and configured to impact the object in the first station with ultrasonic energy; a liquid transporter adapted and configured to circulate at the first station and around the object wash composition, antimicrobial composition, rinse composition, or to circulate a plurality of these compositions; and dryer adapted and configured to dry the object.
  • the wash composition employed in the method of the invention typically includes a cleaning composition suitable for hard surface cleaning and/or for ware washing.
  • the cleaning composition is milder than a cleaning composition employing caustic as a cleaning agent.
  • the cleaning composition does not unacceptably corrode metals, such as aluminum, steel, or stainless steel.
  • the cleaning composition can include carbonate as a cleaning agent and a metal protecting silicate to prevent or reduce corrosion.
  • the antimicrobial agent employed in the wash composition is effective for reducing the population of microorganisms in the wash composition and on the object, but typically cannot provide high level disinfection or sanitization during washing.
  • Contacting with a wash composition including an antimicrobial agent provides a preliminary reduction in population of microorganisms.
  • Suitable antimicrobial agents for the wash composition include quaternary ammonium antimicrobial agents, acid sanitizers, and other health care surface compatible antimicrobial agents, preferably one or more quaternary ammonium antimicrobial agents.
  • contacting can include applying microwave energy, light energy, or the like, or a combination thereof.
  • applying microwave energy can employ a point source of microwave energy that contacts the object with microwave energy before contact with the wash composition.
  • applying light energy can employ a source of continuous or pulsed light, preferably ultraviolet light, that contacts the object inside or outside the system, and before or during contact with the wash composition.
  • Applying light energy can employ a light source immersed in the wash composition and emitting light energy from a point within the wash composition, preferably a point adjacent the object, or a larger light source or multiple sources that provide illumination throughout the wash composition.
  • Light energy can be applied before contacting the object with the wash composition and within or outside of the chamber employed for washing.
  • ultrasonic energy can employ general ultrasonication throughout the wash composition as in an ultrasonic bath, a sonicator probe immersed in the wash composition and emitting ultrasonic energy from a point within the wash composition, preferably a point adjacent the object, employing an irrigated probe that may or may not be in the wash composition but is preferably adjacent the object, and the like.
  • Ultrasonic energy can be applied before contacting the object with the wash composition and within or outside of the chamber employed for washing.
  • washing also includes application of ultrasonic energy throughout the wash composition.
  • An irrigated ultrasonic probe represents a preferred mode for applying ultrasonic energy before applying the wash composition.
  • Contacting an object with a wash composition typically includes circulating the wash composition around the object.
  • circulating includes any way in which a fluid, particularly a liquid, can be moved over, in, and/or around the object.
  • circulating includes sequentially circulating around the object a wash composition, an antimicrobial composition, and a rinse composition, preferably in that order.
  • Circulating the wash composition can also include adding the wash composition to the surroundings of the object and removing the wash composition from around the object.
  • contacting can include immersing the object in the wash composition, spraying the object with a wash composition, or a combination thereof.
  • the present method can also include forming a wash composition by adding a wash concentrate to a fluid.
  • Treating With Antimicrobial Composition can employ any of a variety of antimicrobial agents suitable for achieving high level disinfection or sterilization of an object such as a medical instrument or device.
  • Suitable antimicrobial compositions include antimicrobial agents such as peroxycarboxylic acids, and the like.
  • the method of the invention preferably employs such antimicrobial agents at a sufficient concentration and/or for a sufficient time to achieve high level disinfection or sterilization.
  • Treating the object with an antimicrobial agent preferably includes treating with a composition including a peroxycarboxylic acid.
  • a peroxycarboxylic acid Certain preferred peroxycarboxylic acid compositions are described hereinbelow including in patents and patent applications inco ⁇ orated by reference.
  • preferred peroxycarboxylic acids include antimicrobfally effective amounts of peroxyacetic acid, peroxyoctanoic acid, peroxylactic acid, peroxynonanoic acid, peroxyheptanoic acid, and the like, or combinations thereof.
  • Preferred peroxycarboxylic acid antimicrobial compositions also include ingredients such as a buffer capable of maintaining a use composition at pH about 5 to about 7, preferably about pH 6, such as phosphate, trisodium phosphate, or the like.
  • Such a preferred composition preferably lacks any anticorrosive agent.
  • treating with a peroxycarboxylic acid antimicrobial composition occurs at about room or ambient temperature, preferably at about 20 to about 25 °C.
  • treating with a peroxycarboxylic acid antimicrobial composition occurs at a pH near or slightly below neutral pH, preferably at about pH 5 to about 7, preferably pH about 6.
  • Treating with an antimicrobial composition preferably achieves a higher level of antimicrobial action and can be achieved with a wash composition including an antimicrobial agent.
  • treating with an antimicrobial composition e.g., a peroxycarboxylic acid composition
  • a wash composition including an antimicrobial agent e.g., an antimicrobial agent
  • an antimicrobial composition e.g., a peroxycarboxylic acid composition
  • An antimicrobial treatment can achieve high level disinfection through treatment with a suitable peroxycarboxylic acid at a sufficient concentration and/or for a sufficient time.
  • high level disinfection can be achieved by treating with a peroxycarboxylic acid antimicrobial composition for about 10 to about 12 minutes.
  • treating with an antimicrobial composition e.g., a peroxycarboxylic acid composition, preferably achieves sterilization.
  • An antimicrobial treatment can achieve sterilization through treatment with a suitable peroxycarboxylic acid at a sufficient concentration and/or for a sufficient time.
  • sterilization can be achieved by treating with a peroxycarboxylic acid antimicrobial composition for more than about 12 minutes.
  • Treating an object with a antimicrobial composition typically includes circulating the antimicrobial composition around the object. As described hereinabove, circulating includes any way in which a fluid, particularly a liquid, can be moved over, in, and/or around the object. Circulating the antimicrobial composition can also include adding the antimicrobial composition to the surroundings of the object and removing the antimicrobial composition from around the object.
  • treating can include immersing the object in the antimicrobial composition, spraying the object with an antimicrobial composition, or a combination thereof.
  • the present method can also include forming a antimicrobial composition by adding a antimicrobial concentrate to a fluid.
  • Treating can include applying energy to the object during or after circulating the antimicrobial composition.
  • Treating can include, for example, applying light or microwave energy to the object, preferably in the presence of the antimicrobial composition.
  • treating can include applying light, preferably ultraviolet light, energy throughout the antimicrobial composition.
  • treating can include applying light, preferably ultraviolet light, energy or microwave energy after circulating the antimicrobial composition.
  • Rinsing with a rinse composition can achieve one or more of several goals. Rinsing removes excess wash composition and/or antimicrobial composition from the object. Preferably, rinsing leaves the object free of any unwanted residue of the wash composition and/or the antimicrobial composition after rinsing and drying.
  • the rinse composition includes water, an alcohol drying agent, a lubricant, a rinse agent, or a combination thereof.
  • Rinsing preferably includes a first rinsing and/or a second rinsing, preferably both. First rinsing preferably occurs after contacting with wash composition and before treating with antimicrobial composition. Second rinsing preferably occurs after treating with antimicrobial composition and before drying.
  • first rinsing can employ a composition including water, a rinse agent, or combination thereof.
  • First rinsing preferably prepares the wash object for antimicrobial treatment.
  • Second rinsing preferably employs a composition including an alcohol drying agent, a lubricant, a rinse agent, or a combination thereof.
  • Second rinsing preferably prepares the treated object for drying.
  • Rinsing an object with a rinse composition typically includes circulating the rinse composition around the object.
  • circulating includes any way in which a fluid, particularly a liquid, can be moved over, in, and/or around the object.
  • Circulating the rinse composition can also include adding the rinse composition to the surroundings of the object and removing the rinse composition from around the object.
  • rinsing can include immersing the object in the rinse composition, spraying the object with an rinse composition, or a combination thereof.
  • the present method can also include forming a rinse composition by adding a rinse concentrate to a fluid. Drying
  • Drying can achieve one or more of several goals. First, drying can remove any remaining liquid from antimicrobial treatment and/or rinsing from the object. Second, drying in the presence of a sterilant can both remove liquid from and remove any remaining living or functional organisms from the object. Preferably, drying includes exposing the object to a heated dry fluid, such as heated air. Preferably, drying in the presence of a sterilant includes both drying and exposing the object to a sterilant, preferably a gaseous sterilant. Alternatively, exposing the object to a sterilant can occur before or after drying.
  • the method can employ any sterilant suitable for disinfecting or sterilizing medical instruments or devices.
  • Preferred gaseous sterilants include chlorine dioxide, ethylene oxide, ozone, plasma, and the like, or a combination thereof.
  • Exposing the object to the gaseous sterilant typically includes releasing the gaseous sterilant through a pressure release valve from a pressurized vessel and into the surroundings of the object. The gaseous disinfectant contacts the object. Drying and/or exposing can also include evacuating the gaseous sterilant from around the object and, optionally, from the system.
  • Exposing to sterilant can, in certain embodiments, be supplemented by or replaced by applying energy to the object before, after, or during operation of the dryer.
  • the method can include applying energy to the object.
  • the method can include applying energy to the object.
  • the method can include applying energy to the object.
  • the method can include applying energy to the object.
  • the method can include applying energy to the object.
  • the method can include moving the object from one location to another, or translocating the object, between one or more of contacting, treating, rinsing, and drying.
  • the method can include one or more of translocating the object between contacting and treating, between treating and rinsing, between rinsing and drying. Translocating can also occur between any other processes included in the method. For example, when the method includes contacting the object with ultrasonic energy before contacting with the wash composition, the object can be translocated between the site of contacting with ultrasonic energy of the site of contacting with the wash composition.
  • translocating can occur at one or more of between washing and the first rinsing, between the first rinsing and contacting, between treating and the second rinsing, and between the second rinsing and drying.
  • Translocating the object can employ any of several apparatus suitable for moving an object or a rack containing an object from one location to another, such as a conveyor.
  • wash compositions typically employed for cleaning objects such as medical or dental instruments or devices.
  • the wash composition typically contains an antimicrobial agent, such as a quaternary ammonium antimicrobial agent.
  • Suitable wash compositions include solid wash compositions and liquid wash compositions, acid wash compositions and alkaline wash compositions.
  • Preferred wash compositions include compositions of solid carbonate cleaning compositions.
  • the present systems and methods can employ solid carbonate cleaning compositions, which are typically solids based on a matrix of carbonate and bicarbonate, but including additional ingredients.
  • solid carbonate cleaning compositions are described, for example in U.S. Patents 6,177,392 and 6,156,715 and in U.S. Patent Applications Serial Nos. 08/989,824, entitled BINDING AGENT FOR SOLID BLOCK FUNCTIONAL MATERIAL, and 09/773,965, filed February 1, 2001 and entitled STABLE SOLID ENZYME COMPOSITIONS AND METHODS EMPLOYING THEM, the disclosures of which are incorporated herein by reference. Wash Composition Antimicrobial Agents
  • the present wash compositions and methods employing them can include any of a variety of antimicrobial agents.
  • antimicrobial agents include quaternary ammonium antimicrobial agents, acid sanitizers, and other health care surface compatible antimicrobial agents.
  • Quaternary ammonium antimicrobial agents are useful in the present invention, due to their commercial availability, easy incorporation into formulas and high sanitizing efficacy. These sanitizing agents are also preferred because of their compatibility to high water temperatures to the presence of high organic loads, stability and broad spectrum antimicrobial efficacy in variable high and low pH wash systems, inherent chemical deodorizing, and their non-staining, non-bleaching, non-corrosive nature.
  • Illustrative quaternary ammonium salts include distearyl dimethyl ammonium chloride, stearyl dimethyl benzyl ammonium chloride, coconut alkyl dimethyl benzyl ammonium chloride, dicoconut alkyl dimethyl ammonium bromide, cetyl pyridinium iodide, and cetyl pyridinium iodide, and cetyl trimethyl ammonium bromide, and the like.
  • Suitable fatty acids for the wash composition include a health care surface compatible aliphatic or aromatic fatty acid, either saturated or unsaturated, preferably, saturated, and having from about 6 to about 20 carbon atoms and, preferably, from about 8 to about 12 carbon atoms, as well as mixtures thereof.
  • the fatty acid may be linear, branched or cyclic and may contain substituent atoms such as hydroxyl groups or ether linkages as long as the substituents do not affect antimicrobial activity.
  • Representative of the fatty acids contemplated for use herein include caproic acid, caprylic acid, capric acid, lauric acid, and octanoic acid as well as mixtures thereof.
  • Other medical instrument compatible antimicrobial agents include aldehyde antimicrobial agents; carboxylic acid antimicrobial agents; peracid and peroxygen antimicrobial agents; ozone; organic halogen, inorganic halogen, neutral oxide of a halogen (e.g.
  • halogen releasing antimicrobial agents such as iodine, iodine complexes, interhalogens, chlorine sodium trichloroisocyanurate, iodine-poly(vinylpyrolidinonen) complexes, and 2-bromo-2-nitropropane-l,3-diol; phenolic antimicrobial agents (e.g., pentachlorophenol and orthophenylphenol); surface-active antimicrobial agents, such as acid-anionic, amphoteric and cationic surfactants; nitrogen containing antimicrobial agents and polymers, such as alkylamines alkanol amines, nitro derivatives, and analides; metal derivatives; organosulfur and sulfur-nitrogen compounds; and the like; and mixtures thereof.
  • phenolic antimicrobial agents e.g., pentachlorophenol and orthophenylphenol
  • surface-active antimicrobial agents such as acid-anionic, amphoteric and cationic surfact
  • Alkyl phosphate esters possess some antimicrobial activity in their own right under the conditions of the present invention. This antimicrobial activity also tends to add to the overall antimicrobial activity of the present compositions even though the phosphate esters may be added for other reasons.
  • the system and method of the present invention can employ antimicrobial compositions typically employed for cleaning, disinfecting, and/or sterilizing objects such as medical or dental instruments or devices.
  • Suitable antimicrobial compositions include solid antimicrobial compositions and liquid antimicrobial compositions.
  • Many of the antimicrobial agents described above for use in the wash composition can also be used at the same or higher levels, with other added ingredients, and for longer exposure times to yield disinfection or sterilization of an object, such as a medical or dental instrument or device.
  • Prefe ⁇ ed antimicrobial compositions include peroxycarboxylic acids.
  • liquid peroxycarboxylic acid antimicrobial compositions are known to those of skill in the art and can be employed in the methods of the present invention.
  • suitable compositions are disclosed in U.S. Patent Nos.
  • a preferred antimicrobial composition of the present invention includes acetic acid, octanoic acid, peroxyacetic acid, and peroxyoctanoic acid. Such a composition can also include a chelating agent.
  • a preferred composition preferably includes a combination of peroxyacetic acid and peroxyoctanoic acid effective for killing one or more pathogenic bacteria, such as Salmonella typhimurium, Escherichia coli, Staphylococcus aureus, Salmonella choleraesuis, Pseudomonas aeruginosa, yeast, mold, viruses, mycobacteria, fungi, and the like.
  • compositions and methods of the present invention have activity against a wide variety of microorganisms such as Gram positive (for example, Staphylococcus aureus) and Gram negative (for example, Pseudomonas aeruginosa) bacteria, yeast, molds, bacterial spores, viruses, mycobacteria, fungi, etc.
  • Gram positive for example, Staphylococcus aureus
  • Gram negative for example, Pseudomonas aeruginosa
  • the compositions and methods of the present invention as described above, have activity against a wide variety of human pathogens.
  • the compositions and methods can kill a wide variety of microbes on the surface of an object or in water used for washing or processing the object.
  • the system and method of the present invention can employ rinse compositions typically employed for rinsing objects such as medical or dental instruments or devices.
  • Suitable rinse compositions include solid rinse compositions and liquid rinse compositions, neutral rinse compositions and neutralizing rinse compositions.
  • the rinse composition typically contains a wetting or sheeting agent combined with other optional ingredients.
  • the rinse composition includes a water soluble or dispersible low foaming organic material capable of reducing the surface tension of the rinse water to promote sheeting action and to prevent spotting or streaking caused by beaded water after rinsing is complete in washing or treating processes.
  • sheeting agents are typically organic surfactant like materials having a characteristic cloud point.
  • the cloud point of the surfactant rinse or sheeting agent is defined as the temperature at which a 1 wt.% aqueous solution of the surfactant turns cloudy when warmed.
  • Preferred surfactants employed in the present rinse compositions a cloud point greater than the temperature of available hot service water. Accordingly, the lowest useful cloud point measured for the surfactants of the invention is approximately 40 °C.
  • the cloud point can also be 60 °C or higher, 70 °C or higher, 80 °C or higher, etc., depending on the use locus hot water temperature and the temperature and type of rinse cycle.
  • Preferred sheeting agents typically include a polyether compound prepared from ethylene oxide, propylene oxide, or a mixture in a homopolymer or block or heteric copolymer structure.
  • Such polyether compounds are known as polyalkylene oxide polymers, polyoxyalkylene polymers or polyalkylene glycol polymers.
  • Such sheeting agents require a region of relative hydrophobicity and a region of relative hydrophilicity to provide surfactant properties to the molecule.
  • Such sheeting agents have a molecular weight in the range of about 500 to 15,000.
  • Certain types of (PO)(EO) polymeric rinse aids have been found to be useful containing at least one block of poly(PO) and at least one block of poly(EO) in the polymer molecule. Additional blocks of poly(EO), poly PO or random polymerized regions can be formed in the molecule.
  • Rinse compositions employed in the present invention can include one or more nonionic surfactants, such as one or more EO PO copolymers, urea, and one or more silicones, such as one or more silicone dimethyl polysiloxane compounds. Aspects of the such rinse compositions are described in U.S. Patent No. 4,624,713, to Morganson, et al., issued November 25, 1986, and entitled SOLID RINSE AIDS AND METHODS OF WAREWASHING UTILIZING SOLID RINSE AIDS; the disclosure of which is inco ⁇ orated herein by reference. Rinse compositions employed in the present invention can include a nonionic block copolymer composition, defoamer composition, and a water soluble casting agent.
  • nonionic surfactants such as one or more EO PO copolymers, urea
  • silicones such as one or more silicone dimethyl polysiloxane compounds.
  • the system and method of the present invention can employ gaseous disinfectants or sterilants typically employed for disinfecting and/or sterilizing objects such as medical or dental instruments or devices.
  • Certain of the antimicrobial agents described above for use in the wash composition can be employed as a gaseous disinfectant or sterilant.
  • Suitable gaseous disinfectants or sterilants include chlorine dioxide, ethylene oxide, ozone, plasma, and the like, or combinations thereof.
  • Preferred gaseous disinfectants or sterilants include chlorine dioxide, ethylene oxide, ozone, and the like.
  • the present system and method can also employ a disinfectant or sterilant in the drying cycle that will dissipate during the drying cycle and leave no unacceptable residue on the object.
  • the phrase "adapted and configured” describes a system, apparatus, or other structure that is constructed or configured to perform a particular task or adopt a particular configuration.
  • the phrase "adapted and configured” can be used interchangeably with other similar phrases such as arranged and configured, constructed and arranged, adapted, constructed, manufactured and arranged, and the like.

Abstract

La présente invention concerne un procédé et un système (1) de nettoyage, de désinfection ou de stérilisation d'objets, tels que des instruments ou des dispositifs médicaux ou dentaires. Le système (1) de la présente invention comprend une source d'énergie (5), tel qu'un générateur d'ultrasons, conçue pour frapper un objet avec de l'énergie, telle que de l'énergie ultrasonique ; un circuit de liquide (7) conçu pour faire circuler une composition de lavage, une composition antimicrobienne, une composition de rinçage ou une pluralité de ces compositions autour, à travers et/ou dans l'objet ; et un séchoir (9) conçu pour sécher l'objet, de préférence en présence d'un désinfectant à action stérilisante. Le procédé de la présente invention consiste à mettre l'objet en contact avec une composition de lavage et de l'énergie, telle que de l'énergie ultrasonique ; à traiter l'objet avec une composition antimicrobienne ; à rincer l'objet avec une composition de rinçage ; et à sécher l'objet, de préférence en présence d'un désinfectant à action stérilisante.
PCT/US2002/010364 2001-04-27 2002-04-02 Systeme et procede de nettoyage, de desinfection radicale ou de sterilisation d'instruments ou de dispositifs medicaux ou dentaires WO2002087635A1 (fr)

Priority Applications (3)

Application Number Priority Date Filing Date Title
CA002445272A CA2445272A1 (fr) 2001-04-27 2002-04-02 Systeme et procede de nettoyage, de desinfection radicale ou de sterilisation d'instruments ou de dispositifs medicaux ou dentaires
EP02725487A EP1381398A1 (fr) 2001-04-27 2002-04-02 Systeme et procede de nettoyage, de desinfection radicale ou de sterilisation d'instruments ou de dispositifs medicaux ou dentaires
JP2002584977A JP2004537345A (ja) 2001-04-27 2002-04-02 医療用または歯科用の機器または装置の洗浄、高レベル殺菌または滅菌のためのシステムおよび方法

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US09/844,965 2001-04-27
US09/844,965 US20020159917A1 (en) 2001-04-27 2001-04-27 System and method for cleaning, high level disinfection, or sterilization of medical or dental instruments or devices

Publications (2)

Publication Number Publication Date
WO2002087635A1 true WO2002087635A1 (fr) 2002-11-07
WO2002087635A9 WO2002087635A9 (fr) 2002-12-27

Family

ID=25294069

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/US2002/010364 WO2002087635A1 (fr) 2001-04-27 2002-04-02 Systeme et procede de nettoyage, de desinfection radicale ou de sterilisation d'instruments ou de dispositifs medicaux ou dentaires

Country Status (5)

Country Link
US (1) US20020159917A1 (fr)
EP (1) EP1381398A1 (fr)
JP (1) JP2004537345A (fr)
CA (1) CA2445272A1 (fr)
WO (1) WO2002087635A1 (fr)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103785643A (zh) * 2012-11-05 2014-05-14 内蒙古伊利实业集团股份有限公司 零部件自动清洗、烘干及灭菌的方法
WO2022036886A1 (fr) * 2020-08-20 2022-02-24 深圳市路美康尔医疗科技有限公司 Boîte de désinfection de sonde ultrasonore portative à rayonnement ultraviolet

Families Citing this family (50)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7108000B2 (en) * 2003-06-25 2006-09-19 Steris Inc. Washer pressure equalization system
US7887641B2 (en) 2004-01-09 2011-02-15 Ecolab Usa Inc. Neutral or alkaline medium chain peroxycarboxylic acid compositions and methods employing them
US20050220665A1 (en) * 2004-04-05 2005-10-06 Ding Lambert L Low temperature sterilization and disinfections method and apparatus for medical apparatus and instruments
JP2006095472A (ja) * 2004-09-30 2006-04-13 Jatco Ltd 無段変速機用ベルトの防錆洗浄処理装置及び防錆洗浄処理方法
DE102005022634B4 (de) * 2005-05-11 2010-03-04 Meiko Maschinenbau Gmbh & Co. Kg Verfahren und Vorrichtung zur Aufbereitung von Ausscheidungsgefäßen
US7626187B2 (en) 2005-06-02 2009-12-01 George Younts Method and apparatus for eradicating undesirable elements that cause disease, ailments or discomfort
US7449119B2 (en) 2005-07-28 2008-11-11 Chemtura Corporation Methods for controlling Mycobacterium chelonae and removing bacterial cell membrane fragments from turbulent waters
US7846341B2 (en) * 2006-12-04 2010-12-07 Bacoustics, Llc Method of ultrasonically treating a continuous flow of fluid
US8420016B2 (en) * 2007-05-16 2013-04-16 American Sterilizer Company Microbial deactivation apparatus having integrated ultrasonic drying system
DE102007025264A1 (de) * 2007-05-30 2007-10-18 Meiko Maschinenbau Gmbh & Co. Kg Vorrichtung zur Reinigung durch Mikrowellen
DE102007029282B4 (de) * 2007-06-22 2011-10-20 Dino Anlagen- Und Maschinenbau Gmbh Verfahren und Vorrichtung zum Sterilisieren mindestens eines Arbeitsmittels
EP2025282B1 (fr) * 2007-08-16 2011-04-20 FUJIFILM Corporation Dispositif de retraitement endoscopique
US7841104B2 (en) * 2007-11-02 2010-11-30 Steris Inc. Method and apparatus for drying objects in a washer
US20110044848A1 (en) * 2007-12-21 2011-02-24 Michael Wright Germicidal apparatus and method for sterilizing objects
US8816856B2 (en) * 2009-10-13 2014-08-26 Augusta E.N.T., P.C. Medical instrument cleaning system and method
US8753580B2 (en) 2010-07-20 2014-06-17 Pci Medical, Inc. Intracavity ultrasound probe disinfectant system
JP5938240B2 (ja) * 2012-03-14 2016-06-22 シャープ株式会社 洗浄装置および洗浄方法
US8662244B2 (en) * 2012-06-20 2014-03-04 Kenneth I. Fishberger Stethescope disposable covers
US9752105B2 (en) 2012-09-13 2017-09-05 Ecolab Usa Inc. Two step method of cleaning, sanitizing, and rinsing a surface
US8871699B2 (en) 2012-09-13 2014-10-28 Ecolab Usa Inc. Detergent composition comprising phosphinosuccinic acid adducts and methods of use
US9994799B2 (en) 2012-09-13 2018-06-12 Ecolab Usa Inc. Hard surface cleaning compositions comprising phosphinosuccinic acid adducts and methods of use
US20140308162A1 (en) 2013-04-15 2014-10-16 Ecolab Usa Inc. Peroxycarboxylic acid based sanitizing rinse additives for use in ware washing
GB201216460D0 (en) * 2012-09-14 2012-10-31 Medisafe Uk Ltd Method of pre-treating medical instruments
FR3005845B1 (fr) * 2013-05-22 2016-09-02 Air Liquide European Homecare Operations Services Procede et installation de nettoyage et de desinfection de dispositifs medicaux
KR101527770B1 (ko) * 2013-11-07 2015-06-12 주식회사 메가젠임플란트 올인원 세정기
WO2015150986A1 (fr) * 2014-04-02 2015-10-08 Mocom S.R.L. Désinfecteur thermique ultrasonore
CN104259146B (zh) * 2014-07-29 2016-06-22 宁波国创机车装备有限公司 一种清洗装置
CN104792119B (zh) * 2015-04-09 2017-01-25 屈小鹏 一种医疗器械干燥箱
JP2018534095A (ja) * 2015-09-24 2018-11-22 オンエイティディグリーズシー・テクノロジーズ・コーポレイション 物体を滅菌および/または脱免疫化するためのシステムおよび方法
CH712243A1 (de) * 2016-03-02 2017-09-15 Netzhammer Eric Behandlungsvorrichtung für Kleinteile.
CN211071077U (zh) * 2016-12-14 2020-07-24 卡本有限公司 用于清洗通过立体光刻制造的物体的设备和增材制造系统
WO2018157160A1 (fr) * 2017-02-27 2018-08-30 Nanovation Partners LLC Systèmes d'implant nanostructuré à durée de vie améliorée et procédés
CN111556762A (zh) * 2017-12-30 2020-08-18 3M创新有限公司 等离子体灭菌及干燥系统和方法
CN108553180A (zh) * 2018-05-15 2018-09-21 成都冠禹科技有限公司 一种适用于普外科的清创无菌护理装置
CN109647761B (zh) * 2018-12-18 2021-06-15 吉林市结核病医院(吉林市第九人民医院) 一种彩超探头消毒装置
CN109909228A (zh) * 2019-03-18 2019-06-21 什邡市妇幼保健院 一种妇产科用医疗器械清洗装置
JP7201230B2 (ja) * 2019-03-28 2023-01-10 株式会社エアレックス 除染装置及びこれを配置したパスボックス
JP7201229B2 (ja) * 2019-03-28 2023-01-10 株式会社エアレックス 除染装置
JP7233691B2 (ja) * 2019-03-28 2023-03-07 株式会社エアレックス 低温物品の除染方法及びこれに使用するパスボックス
JP7201231B2 (ja) * 2019-04-03 2023-01-10 株式会社エアレックス 連続除染装置
US11925514B2 (en) 2019-04-29 2024-03-12 KMW Enterprises LLC Apparatus and methods for intraoperative surgical instrument sterilization
JP7217947B2 (ja) * 2019-05-14 2023-02-06 株式会社エアレックス パスボックス
CN110859982A (zh) * 2019-11-21 2020-03-06 董少军 一种新型彩超探头消毒装置
CN110859677A (zh) * 2019-11-22 2020-03-06 长沙星灿医院有限公司 一种结石手术用的清洗装置
CN111407449B (zh) * 2020-04-23 2022-08-09 马鞍山勤企信息科技有限公司 一种牙科设备用的水箱机构
KR102450345B1 (ko) * 2020-05-29 2022-09-30 동의대학교 산학협력단 병원균의 탐지 및 살균 장치
RU2745455C1 (ru) * 2020-12-02 2021-03-25 ООО "Научно-производственное предприятие "Альтаир" Многофункциональный озоновый стерилизатор
CN112775098A (zh) * 2020-12-24 2021-05-11 吉林大学第一医院 一种内科检查用医疗器械存放装置
IT202100009296A1 (it) * 2021-04-13 2022-10-13 Robosan S R L Sistema per la sanificazione automatizzata di contenitori per campioni biologici e suo procedimento di utilizzo
CN114392380B (zh) * 2021-12-10 2023-09-01 哈尔滨圣年生物科技有限公司 一种医疗用便携式针头快速消毒设备

Citations (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB947700A (en) * 1961-05-01 1964-01-29 Bendix Corp Sterilization method and apparatus
US3708263A (en) * 1971-01-15 1973-01-02 Wave Energy Systems Method for continuous sterilization at low temperature
CH559583A5 (en) * 1973-11-07 1975-03-14 Storz Endoskop Gmbh Ultra-sonic cleaning device for medical instruments - requires no special rinsing tank, can be used in hand basin
AU4638879A (en) * 1978-04-26 1979-11-01 Hochmann, G.J.A. Multi-station ultrasonic cleaning plant
GB2040150A (en) * 1979-01-18 1980-08-20 Aussenac J Sonic-actinic cleaning and sterilising of instruments
DE3324939A1 (de) * 1983-07-11 1985-01-24 Siemens AG, 1000 Berlin und 8000 München Verfahren und vorrichtung zur reinigung und desinfektion von aerztlichen, insbesondere zahnaerztlichen, instrumenten
US4710233A (en) * 1984-08-20 1987-12-01 Siemens Aktiengesellschaft Method and apparatus for cleaning, disinfecting and sterilizing medical instruments
US5425815A (en) * 1990-09-20 1995-06-20 Keymed (Medical & Industrial Equipment) Limited Cleaning and disinfecting endoscopic medical instruments
US5494637A (en) * 1993-08-09 1996-02-27 Olympus America Inc. Endoscope washer
US6015529A (en) * 1997-12-17 2000-01-18 Johnson & Johnson Medical, Inc. Tray/container system for cleaning/sterilization processes
WO2000030690A1 (fr) * 1998-11-23 2000-06-02 Ecolab Inc. Composition de sterilisation non-corrosive
US6090213A (en) * 1998-06-10 2000-07-18 Moyers; Lee Ultrasonic parts cleaning system
US6177392B1 (en) * 1997-01-13 2001-01-23 Ecolab Inc. Stable solid block detergent composition

Family Cites Families (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3481687A (en) * 1965-03-08 1969-12-02 Sherman S Fishman Method and apparatus for ultrasonic sterilization
US3837805A (en) * 1971-01-15 1974-09-24 Wave Energy Systems Apparatus for continuous sterilization at low temperature
US4448750A (en) * 1981-06-05 1984-05-15 Fuesting Michael L Sterilization method
US4494357A (en) * 1981-12-31 1985-01-22 International Paper Company Sterilization of packaging material
US4504442A (en) * 1982-10-19 1985-03-12 Scopas Technology Corporation Use of chlorine dioxide gas as a chemosterilizing agent
US4908188A (en) * 1985-02-05 1990-03-13 The Scopas Technology Company, Inc. Gas sterilant system
US4720374A (en) * 1985-07-22 1988-01-19 E. I. Du Pont De Nemours And Company Container having a sonication compartment
US5200189A (en) * 1991-07-23 1993-04-06 Ecolab Inc. Peroxyacid antimicrobial composition
US5407354A (en) * 1993-12-03 1995-04-18 Gull Laboratories, Inc. Anti-microbial apparatus and method for dental handpieces
US5686045A (en) * 1994-02-09 1997-11-11 Carter; Stephen D. Method for the heat independent sterilization of microbially contaminated instruments
US5514346A (en) * 1994-04-01 1996-05-07 Fujita; Sanai Dryer for deodorization and sterilization
US6071480A (en) * 1994-12-22 2000-06-06 Abbott Laboratories Method for generating a standing sonic wave, methods of sonication with a standing sonic wave, and a standing sonic wave sonicator
US5837303A (en) * 1997-04-07 1998-11-17 Mark Hayden Method for killing microorganisms in liquids

Patent Citations (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB947700A (en) * 1961-05-01 1964-01-29 Bendix Corp Sterilization method and apparatus
US3708263A (en) * 1971-01-15 1973-01-02 Wave Energy Systems Method for continuous sterilization at low temperature
CH559583A5 (en) * 1973-11-07 1975-03-14 Storz Endoskop Gmbh Ultra-sonic cleaning device for medical instruments - requires no special rinsing tank, can be used in hand basin
AU4638879A (en) * 1978-04-26 1979-11-01 Hochmann, G.J.A. Multi-station ultrasonic cleaning plant
GB2040150A (en) * 1979-01-18 1980-08-20 Aussenac J Sonic-actinic cleaning and sterilising of instruments
DE3324939A1 (de) * 1983-07-11 1985-01-24 Siemens AG, 1000 Berlin und 8000 München Verfahren und vorrichtung zur reinigung und desinfektion von aerztlichen, insbesondere zahnaerztlichen, instrumenten
US4710233A (en) * 1984-08-20 1987-12-01 Siemens Aktiengesellschaft Method and apparatus for cleaning, disinfecting and sterilizing medical instruments
US5425815A (en) * 1990-09-20 1995-06-20 Keymed (Medical & Industrial Equipment) Limited Cleaning and disinfecting endoscopic medical instruments
US5494637A (en) * 1993-08-09 1996-02-27 Olympus America Inc. Endoscope washer
US6177392B1 (en) * 1997-01-13 2001-01-23 Ecolab Inc. Stable solid block detergent composition
US6015529A (en) * 1997-12-17 2000-01-18 Johnson & Johnson Medical, Inc. Tray/container system for cleaning/sterilization processes
US6090213A (en) * 1998-06-10 2000-07-18 Moyers; Lee Ultrasonic parts cleaning system
WO2000030690A1 (fr) * 1998-11-23 2000-06-02 Ecolab Inc. Composition de sterilisation non-corrosive

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103785643A (zh) * 2012-11-05 2014-05-14 内蒙古伊利实业集团股份有限公司 零部件自动清洗、烘干及灭菌的方法
CN103785643B (zh) * 2012-11-05 2016-06-15 内蒙古伊利实业集团股份有限公司 零部件自动清洗、烘干及灭菌的方法
WO2022036886A1 (fr) * 2020-08-20 2022-02-24 深圳市路美康尔医疗科技有限公司 Boîte de désinfection de sonde ultrasonore portative à rayonnement ultraviolet

Also Published As

Publication number Publication date
CA2445272A1 (fr) 2002-11-07
EP1381398A1 (fr) 2004-01-21
JP2004537345A (ja) 2004-12-16
WO2002087635A9 (fr) 2002-12-27
US20020159917A1 (en) 2002-10-31

Similar Documents

Publication Publication Date Title
US20020159917A1 (en) System and method for cleaning, high level disinfection, or sterilization of medical or dental instruments or devices
JP2758204B2 (ja) 医療器具の洗浄殺菌方法
KR100656451B1 (ko) 사용필 의료기구류의 세척·멸균처리방법
US6814932B2 (en) Device support activation system
US4784790A (en) Preparations and processes for cleaning and disinfecting endoscopes
US6582654B1 (en) Fluid spray system for cleaning and sterilizing medical devices supported on a rack
EP1432783B1 (fr) Decontamination de surfaces contaminees par une substance infectee par des prions au moyen d'agents oxydants gazeux
US20050220665A1 (en) Low temperature sterilization and disinfections method and apparatus for medical apparatus and instruments
JP2007504927A (ja) プリオン感染物質で汚染された表面を洗浄および除染する処方物
JPH06503489A (ja) 医療機器の洗浄及び消毒
PL196210B1 (pl) Sposób czyszczenia i odkażania delikatnego sprzętu medycznego
US7323149B2 (en) Supplemental ozone treatment for ensuring the sterility of instrument cleaning systems
US20070231198A1 (en) Hydrogen Peroxide Foam Treatment
JP2011147768A (ja) 過酢酸および過酸化水素からなる組成物の水溶液を用いる医療用、外科用および歯科用器具を手により滅菌する方法
US20070231199A1 (en) Hydrogen peroxide foam treatment
GB2500866A (en) Method for decontamination of medical instruments
EP1839681A1 (fr) Traitement par mousse de peroxyde d'hydrogène
US20060199751A1 (en) Supplemental ozone treatment methods for difficult cleaning and sterilizing applications
CA2368284A1 (fr) Produits pour effectuer un nettoyage desinfectant de surfaces
CN116099021A (zh) 一种医学护理用杀菌消毒装置
TW200302113A (en) Cleaning and sterilizing treatment of used medical appliance
Ai-Hinnawi Low temperature sterilization technologies: past, present and future
Yang et al. An endoscope washer using a moving brush module

Legal Events

Date Code Title Description
AK Designated states

Kind code of ref document: A1

Designated state(s): AE AG AL AM AT AU AZ BA BB BG BR BY BZ CA CH CN CO CR CU CZ DE DK DM DZ EE ES FI GB GD GE GH GM HR HU ID IL IN IS JP KE KG KP KR KZ LC LK LR LS LT LU LV MA MD MG MK MN MW MX MZ NO NZ PH PL PT RO RU SD SE SG SI SK SL TJ TM TR TT TZ UA UG UZ VN YU ZA ZW

AL Designated countries for regional patents

Kind code of ref document: A1

Designated state(s): GH GM KE LS MW MZ SD SL SZ TZ UG ZM ZW AM AZ BY KG KZ MD RU TJ TM AT BE CH CY DE DK ES FI FR GB GR IE IT LU MC NL PT SE TR BF BJ CF CG CI CM GA GN GQ GW ML MR NE SN TD TG

AK Designated states

Kind code of ref document: C2

Designated state(s): AE AG AL AM AT AU AZ BA BB BG BR BY BZ CA CH CN CO CR CU CZ DE DK DM DZ EE ES FI GB GD GE GH GM HR HU ID IL IN IS JP KE KG KP KR KZ LC LK LR LS LT LU LV MA MD MG MK MN MW MX MZ NO NZ PH PL PT RO RU SD SE SG SI SK SL TJ TM TR TT TZ UA UG UZ VN YU ZA ZW

AL Designated countries for regional patents

Kind code of ref document: C2

Designated state(s): GH GM KE LS MW MZ SD SL SZ TZ UG ZM ZW AM AZ BY KG KZ MD RU TJ TM AT BE CH CY DE DK ES FI FR GB GR IE IT LU MC NL PT SE TR BF BJ CF CG CI CM GA GN GQ GW ML MR NE SN TD TG

COP Corrected version of pamphlet

Free format text: PAGES 1/8-8/8, DRAWINGS, REPLACED BY NEW PAGES 1/8-8/8; DUE TO LATE TRANSMITTAL BY THE RECEIVING OFFICE

121 Ep: the epo has been informed by wipo that ep was designated in this application
DFPE Request for preliminary examination filed prior to expiration of 19th month from priority date (pct application filed before 20040101)
WWE Wipo information: entry into national phase

Ref document number: 2445272

Country of ref document: CA

WWE Wipo information: entry into national phase

Ref document number: 2002584977

Country of ref document: JP

WWE Wipo information: entry into national phase

Ref document number: 2002725487

Country of ref document: EP

WWP Wipo information: published in national office

Ref document number: 2002725487

Country of ref document: EP

REG Reference to national code

Ref country code: DE

Ref legal event code: 8642

WWR Wipo information: refused in national office

Ref document number: 2002725487

Country of ref document: EP

WWW Wipo information: withdrawn in national office

Ref document number: 2002725487

Country of ref document: EP